Rabu, 23 Desember 2015

^ Ebook The Family Guide to Mental Health Care, by Lloyd I. Sederer MD

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The Family Guide to Mental Health Care, by Lloyd I. Sederer MD

Expert advice from the medical director of the country’s largest state mental health system and the mental health editor of The Huffington Post.

More than fifty million people a year are diagnosed with some form of mental illness. It spares no sex, race, age, ethnicity, or income level. And left untreated, mental disorders can devastate our families and communities. Family members and friends are often the first to realize when someone has a problem, but it is hard to know how to help or where to turn. Our mental health “system” can feel like a bewildering and frustrating maze. How can you tell that someone has a mental illness? What are the first and best steps for you to take? Where do you go to find the right care? 

The Family Guide to Mental Health Care is the first comprehensive print resource for the millions of people who have loved ones suffering from some kind of mental illness. In this book, families can find the answers to their most urgent questions. What medications are helpful and are some as dangerous as I think? Is there a way to navigate privacy laws so I can discuss my adult daughter’s treatment with her doctor? Is my teenager experiencing typical adolescent distress or an illness? From understanding depression, bipolar illness and anxiety to eating and traumatic disorders, schizophrenia, and much more, readers will learn what to do and how to help.

Real-life scenarios and authoritative information are written in a compassionate, reader-friendly way, including checklists to bring to a doctor’s appointment so you can ask the right questions. For readers who fear they will never see the light at the end of the tunnel, this book gives hope and a path forward.

As one of the nation’s leading voices on quality care in mental health, Dr. Lloyd Sederer has played a singular role in advancing services for those with mental illness. Now, the wealth of his expertise and clear guidance is at your disposal. From the first signs of a problem to sorting through the variety of treatment options, you and your family will be able to walk into a doctor’s office know what to do and what to ask.

  • Sales Rank: #413055 in Books
  • Published on: 2015-01-19
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.20" h x 1.00" w x 6.20" l, .0 pounds
  • Binding: Paperback
  • 336 pages

From Booklist
More than 50 million Americans experience some form of mental illness annually. A large number of these individuals fail to get appropriate treatment. Some don’t even receive a correct diagnosis. Sederer’s guide helps folks (particularly family members and friends of people afflicted with psychiatric conditions) familiarize themselves with all aspects of mental illness: symptoms, treatment, prevention, health-insurance issues, and the law. Tucked in the middle of this useful guide is a valuable chapter, “A World of Hurt: The Faces of Mental Illness,” that summarizes many mental-health disorders—generalized anxiety, obsessive-compulsive, panic, personality, bipolar, binge eating—as well as depression and schizophrenia but not alcohol or substance abuse. Treatments of these problems, including medications, psychotherapy, electroconvulsive therapy (ECT), and repetitive Transcranial Magnetic Stimulation (rTMS), are described. Written by a psychiatrist who is a mental-health administrator, the presentation is practical and compassionate. The main message about mental illness is urgent and uplifting: recovery is possible but requires effort, excellent treatment, assistance from loved ones, patience, and steadfast hope. --Tony Miksanek

Review
“[Sederer] is the rare combination of public health expert, teacher, and writer and has put all of his skills together in this superb volume. . . . This is one of the best and most practical guides for families. It will also be extremely useful in helping clinicians (physicians and other professionals) understand how to work with families and the lay language they need to use to empower families to be treatment extenders in many different settings. . .as well as to trainees and young clinicians embarking on practices that must include not only individuals in need but also interventions with families.” (Journal of Psychiatric Practice)

“Dr. Lloyd Sederer has spent his impressive medical career in psychiatry and demonstrates both his knowledge and sensitivity in his book . . . . The Family Guide to Mental Health Care provides families with valuable resources, but maybe everyone should read it. To change attitudes about mental illness requires that everyone listen and understand.” (America)

“[A] practical, easy-to-read assortment of information and advice for many persons who have adult loved ones with a mental illness.” (Psychiatric Services)

“If you have a family member with mental illness, then The Family Guide to Mental Health Care by Lloyd I. Sederer, M.D., is the book for you. . . . Even more impressive than his credentials is his straightforward, warm, compassionate tone.” (NAMI Advocate)

“[A]n excellent resource for families struggling with a loved one’s mental illness.” (The National Council for Behavioral Health)

“If your practice or your advocacy efforts place you anywhere near people encountering the mental health system for the first time, please have a look at this book. Piles of them – the books, not the patients – should be sitting in the waiting area of every mental health center and emergency department (ED). A brief literature search suggests there is nothing published like this book. In any case, this one is so comprehensive while remaining so welcoming; it is so authoritative and yet unintimidating, one need not look further.” (Psychiatric Times)

“[A] compassionate and fact-packed guide for families struggling with mental illness.” (NAMI-NYC Metro Newsletter)

“[P]ractical and compassionate.” (Booklist)

“[A] thoughtful, compassionate, and fact-packed guide for recognizing illness and getting help. . . . With passionate optimism, Sederer examines the facts about diagnoses, treatments, and doctors, and suggests questions to ask at every step of the way. . . . [A] remarkable resource . . . . With a moving foreword by actress Glenn Close, who calls mental illness ‘a family affair,’ this extraordinary guide offers valuable information and inspiration.” (Publishers Weekly)

“[A]n invaluable ‘must’ bible packed with resources for any family facing mental illness.” (Midwest Book Review)

“I respond personally to what Lloyd Sederer writes because he makes me feel like he is sitting at this very kitchen table, gently explaining to me, with great knowledge, insight and patience, what is happening to my loved one and what my family and I can do about it.” (Glenn Close (from the Foreword))

“For families reeling from the fact that a loved one suffers from mental illness, knowing what to do and where to go to find the best treatment can be a daunting task. Lloyd Sederer’s timely book provides an informative and accessible guide to persons faced with this challenge. Dr. Sederer is uniquely qualified to advise people given his experience in virtually every sector of psychiatric medicine and mental health care. This book is indispensable to the many people who must confront mental illness.” (Jeffrey A. Lieberman, M.D. President-Elect, The American Psychiatric Association; Lawrence C. Kolb Professor and Chairman of Psychiatry, Columbia University College of Physicians and Surgeons)

“The Family Guide to Mental Health Care is an invaluable resource for any family struggling to recognize the myths, fueled by stigma, and find the best care for their loved one.” (General Peter Chiarelli (Ret) 32nd Vice Chief of Staff of the Army)

“In a society where the disorders of the mind and mood are too seldom understood, Dr. Sederer has provided remarkable clarity in his explanations of the illnesses for the layperson. He outlines what help is needed, where to get help, and how to manage the system for caregiving and treatment. This is a complete guide to navigating a complex and all-too-challenging world faced by anyone impacted by the challenges of mental illnesses. With outstanding clarity and sympathetic understanding he brings help to the helpers and guidance to those who can aid them.” (Connie Lieber, Past President, National Alliance for Research on Schizophrenia and Depression (NARSAD), currently the Brain and Behavior Research Foundation)

“Dr. Sederer’s book recognizes the essential contributions families make, discusses every challenge they face, and provides them with clear and exceptionally well-informed advice. There is no book like it. I recommend this book to families as a highly useful guide for what is too often a confusing and frightening journey.” (Linda Rosenberg, MSW, CEO, National Council for Community Behavioral Healthcare)

“Many millions of people have a mental illness but most do not get the treatment and help that they need. With the knowledge to navigate the mental health care system comes the power to recover. This uniquely accessible book provides that knowledge, and is a necessary guide for patients and their families.” (Gail Saltz, MD, Clinical Associate Professor of Psychiatry, NewYork-Presbyterian Hospital; NBC’s TODAY show mental health contributor)

“When someone in your family may have a serious mental illness, you will wish that you had a senior psychiatrist nearby to give advice every step of the way. The Family Guide to Mental Health Care gives the reader this gift.” (Anand Pandya, MD, Past President and current consultant to the National Alliance on Mental Illness (NAMI); Associate Clinical Professor, Department of Psychiatry & Behavioral Neurosciences, UCLA)

About the Author
Lloyd I. Sederer, MD, is Medical Director of the New York State Office of Mental Health (OMH), the nation’s largest state mental health system and New York State’s “chief psychiatrist.” He is Adjunct Professor at the Columbia/Mailman School of Public Health and has served as Acting Director of The Nathan Kline Institute for Psychiatric Research in Rockland County, New York. Dr. Sederer is a former Medical Director and Executive Vice President of McLean Hospital in Belmont, Massachusetts, one of the world’s foremost psychiatric hospitals, and a teaching hospital of Harvard Medical School, where he also served on the faculty. In 2009, Dr. Sederer was recognized as Psychiatric Administrator of the Year by the American Psychiatric Association and was awarded a Rockefeller Foundation Scholar-in-Residence grant. He has also received an Exemplary Psychiatrist award from the National Alliance on Mental Illness (NAMI), the largest family mental health advocacy group in the country.The author of seven textbooks and more than 350 professional articles and reports, he lectures across the country and the world to families of people with mental illness, as well as to mental health policy makers, government officials, and other professionals. He is the first medical editor of The Huffington Post, where he writes frequently about mental health and the addictions, as well as provides movie and book reviews.His Web site, www.askdrlloyd.com, is dedicated to helping people, and their families, get the care they need to recover from mental illness and the addictions.

Glenn Close is a film, television, and stage actress who has become a leader on the issue of eliminating the stigma of mental illness through her advocacy organization, Bring Change 2 Mind.

Most helpful customer reviews

10 of 10 people found the following review helpful.
I wish I'd had a handbook like this forty years ago.
By Janis K.
I am a psychiatric social worker with 40 years of experience in mental health, 17 years of which were in in-patient facilities. Dr. Sederer's book guides consumers through every step of the process for patient and family, from observing symptoms, finding appropriate helping professionals, understanding diagnoses, behaviors,and medications,and evaluating treatment and follow-up resources. He is honest about the strengths and weaknesses of the current mental health system, and gives guidelines about how to get the best help for one's loved one. The appedices are full of practical resources, references, and assessment scales. His manner is personal and empathic; this book is easy to read and full of useful advice. I wish I'd had this resource for families many years ago!

11 of 12 people found the following review helpful.
Comprehensive, accessible, empowering!
By Jennifer
As an independently licensed forensic social worker, I found this to be a very thorough and empowering overview of the mental health system. Dr. Lloyd Sederer provides a comprehensive and honest guide to mental health care full of poignant vignettes from the field and illustrates how difficult it can be to navigate. This book reads like you have invited a caring and knowledgeable friend over for dinner. His message of hope for the individual and family living with mental illness is clear and can be felt throughout the pages. He in fact states, "Hope is critical to living with and managing any serious, persistent condition" and he could not be more right. This book empowers us to be prudent consumers in the complex maze of mental health services in America. I highly recommend this book to everyone as mental illness impacts each of us whether professionally or personally. Thank you Dr. Sederer for contributing to the discourse around this prevalent issue. It could not have come out at a more critical time in our country particularly in light of the recent events of Newtown.

7 of 8 people found the following review helpful.
Perfect mental health primer
By NYCMHPro
This book is simply perfect for someone who's concerned about a loved one's mental health. Whether you're wondering if someone you love has a mental illness or someone you love has been diagnosed with a mental illness and you don't know how to help, this book will give you practical, useful advice in an accessible and understandable way. Dr. Sederer boils decades of expertise down into a digestible format with simple advice and clear guidance. This book is simply indispensable for families taking their first steps into the complex mental health system. I would recommend this book highly to anyone who wants to help a loved one who is being swept up in a mental health crisis.

Not since Rosalynn Carter published Helping Someone with Mental Illness: A Compassionate Guide for Family, Friends, and Caregivers in 1999 has so much up-to-date information been brought together in one place in such a readable book.

This book is a must read.

See all 35 customer reviews...

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Selasa, 22 Desember 2015

## PDF Ebook Nutrition, Exercise, and Behavior: An Integrated Approach to Weight Management, by Liane M. Summerfield

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NUTRITION, EXERCISE, AND BEHAVIOR: AN INTEGRATED APPROACH TO WEIGHT MANAGEMENT presents the basic principles of weight management and examines the role that nutrition and physical fitness play in weight control. The text takes an integrated approach to weight management issues and includes detailed coverage of assessment techniques, behavioral and non-behavioral treatment approaches, and prevention strategies.

  • Sales Rank: #782622 in Books
  • Published on: 2015-01-01
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.00" h x .70" w x 7.20" l, .0 pounds
  • Binding: Paperback
  • 448 pages

About the Author
Liane M. Summerfield is a professor of health and nutrition and Associate Vice President for Academic Affairs at Marymount University in Arlington, Virginia. She received her PhD in health education from the University of Maryland in College Park, Maryland. She continues to teach whenever possible and oversees the University's undergraduate research center, freshman seminar program, and faculty development center.

Most helpful customer reviews

1 of 1 people found the following review helpful.
Dense with knowledge yet flows for easy understanding.
By Amber Mendonca
Exactly as the title suggests.. Breakdown by chapter is comprehensive.. Dense with knowledge yet flows for easy understanding.

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Senin, 21 Desember 2015

** Download The Oxford Handbook of Positive Psychology and Disability (Oxford Library of Psychology)From Oxford University Press

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Roughly 54 million people with disabilities live in the U.S., and there are many more millions of people with disabilities around the world. Not surprisingly, differences among people with disabilities are often as notable as differences between people with and without disabilities. And, while the lack of homogeneity among people with disabilities makes creating a valid taxonomy under this term difficult if not impossible, there is commonality among people with disabilities that justifies an authoritative resource on positive psychology and disability; that is, they have experienced discrimination and marginalization as a function of their disability.

This volume assembles chapters by leading scholars in disability and positive psychology to provide a comprehensive synthesis of the state of the field. Chapters are organized into thematic sections, beginning with an introductory section on overarching themes in positive psychology and disability. The second section highlights the application of positive psychological constructs to disability. These constructs includes quality of life, self-determination, adaptive behavior, optimism, hope, problem solving, forgiveness, gratitude, and spirituality. The following section addresses systemic issues in disability that impact on positive psychology, again turning to disciplines beyond psychology (special education, rehabilitation sciences, and family and disability policy) to address areas in which positive psychology can be applied. A fourth section examines positive psychology in populations with specific disabilities, including physical disabilities, cognitive and developmental disabilities, severe multiple disabilities, emotional and behavioral disabilities, and autism spectrum disorders.

Disability has always been associated with "differentness" and, consequently, people with disabilities have throughout time been treated as such. As the first handbook to consider disability from a strengths-based perspective, this volume provides a catalyst to accelerate the application of positive psychology to how disability is understood.

  • Sales Rank: #1384569 in Books
  • Published on: 2015-01-01
  • Released on: 2015-01-01
  • Original language: English
  • Number of items: 1
  • Dimensions: 7.00" h x 1.10" w x 9.90" l, 2.61 pounds
  • Binding: Paperback
  • 560 pages

Review
"Using positive psychology as a basis, this book explores disabilities in terms of strengths and discusses how to provide support to disabled individuals to help them increase their quality of life. This book covers the topic of the integration of positive psychology and disability quite well. The importance of seeing disability in terms of strengths and not simply limitations cannot be underestimated. This is a refreshing look at how to assist the disabled in reaching their goals." --Gary B Kaniuk, Psy.D., Doody's Health Sciences Book Review

"The Oxford Handbook of Positive Psychology and Disability, edited by Michael Wehmeyer, provides an in-depth exploration of research on people with intellectual and/or developmental disabilities. [... T]his collection of original research benefits from the credibility of authorities in the fields of disability and positive psychology. [...] The Oxford Handbook of Positive Psychology and Disability is a valuable addition to the library of any professional or student interested in increasing overall cultural competence in working with individuals with disabilities. It challenges professionals to embrace their responsibility to advocate for and with people with disabilities in recognition that basic provision of rights is meaningless if individuals cannot access the freedoms and opportunities that these rights are intended to afford." --Kara Ayers and Stephanie Weber, PsycCRITIQUES

About the Author

Michael L. Wehmeyer, Ph.D., is Professor in the Department of Special Education, University of Kansas; Director of the Kansas University Center on Developmental Disabilities; and Senior Scientist at the Beach Center on Disability, University of Kansas. His research and intervention efforts focus on promoting the self-determination of children, youth, and adults with and without disabilities.

Most helpful customer reviews

0 of 0 people found the following review helpful.
A new beginning.
By Academic, New Zealand
Finally, a positive book about people with disabilities. Will disappoint those who can only think in DSM labels. I will be looking for frequent updates or new editions as new research in these areas is piling up 'fast and furious.' Bouquets to the authors!

0 of 0 people found the following review helpful.
Five Stars
By Vicki Thompson
Super book and in great condition.

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Minggu, 20 Desember 2015

? Get Free Ebook The Power of 100!: Kickstart Your Dreams, Build Momentum, and Discover Unlimited Possibility, by Shaun King

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The Power of 100!: Kickstart Your Dreams, Build Momentum, and Discover Unlimited Possibility, by Shaun King

Too broke or broken, too old or young, too stressed or busy to make your dreams reality? Join Shaun King and walk the transformative path to overcoming adversity and achieving success as he reveals practical steps to a life of unlimited possibility.

Have you lost a job that you loved, or never even gotten the chance to start? Are you in a rut of mediocre, status-quo living, too tired and stressed to find a way out? Do you wonder whatever happened to the dreams you once dared to dream?

Shaun King has been there, and he wants you to know that it’s not too late. Shaun knows firsthand what it’s like to see your dreams fade away right before your eyes; he’s lived through brutal spinal surgeries, had to survive on food stamps, worked four jobs at once, and he nearly died in a car accident that required over 400 stitches on his face alone. But he’s also emerged stronger and overcome the odds to become a successful businessman, social media pioneer, and humanitarian. Now he wants you to know that you can still take the dreams God has placed in your heart, craft them into goals, and actually make those goals into your reality.

In an entertaining and conversational style, Shaun King shares the trials, research, and years of practice that have helped him form practical principles and effective strategies for overcoming adversity and achieving success. He encourages you to grasp the truth that your life has more potential than you understand; you just need to face your weakest points and unlock that potential.

  • Sales Rank: #142948 in Books
  • Published on: 2015-01-06
  • Released on: 2015-01-06
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.00" h x 1.00" w x 6.00" l, 1.00 pounds
  • Binding: Hardcover
  • 304 pages

Review
"In The Power of 100, you'll learn that crafting a great life is not difficult; it's intentional. But we require a guide. A tool to assist us on our journey and to sustain our efforts. Here is your answer. It's more than a book. It's more than a plan. It's wisdom and opportunity bleeding from a page. It's an answer to what really matters."
-Dale Partridge, founder of TheDailyPositive.com and author of People Over Profit

"Shaun King does the work and is who we say we should see more of. This book, with so many amazing stories and lessons from his life, is going to help you." -Talib Kweli, hip-hop artist & activist

"Success is nothing without a plan. If you are like me, a leader with many great ideas, you need help with how to see them manifested. The Power of 100! by Shaun King has amazing tools to get you right where you want to be." -Ledisi, eight-time Grammy nominee

"Passion is great, but eventually it has to lead to a plan or you'll only end up with a lot of what-might-have-been moments. Fortunately, Shaun King has created a personal, practical resource to help dreamers, achievers, and leaders accomplish the goals they've always felt called to!" -Jon Acuff, New York Times bestselling author of Start: Punch Fear in the Face, Escape Average & Do Work That Matters

"We're all guilty of backing away from a dream that seems impossible. I was almost moved to tears by the conviction I felt while reading Shaun's words about the fear and doubt we get once we 'grow up.' In this book Shaun not only makes you reenergize those ridiculous dreams you have, but he also gives practical steps on how to realistically achieve them. I'm going to keep this one close!" -PJ Morton, Grammy winner, member of Maroon 5

“Did you know that there's a blueprint for becoming a hero? In The Power of 100!, Shaun King helps everyday leaders discover the energy and ideas they need to realize their deepest passions and most important dreams. Crack open this book, strap on your cape, and soar.”
-Joshua DuBois, author, The President's Devotional, former director of the Office of Faith Based and Neighborhood Partnerships in the Executive Office of the President of the United States

“When it comes to making a difference in the world, Shaun King knows that it starts with leading yourself, with setting smart goals and going after them. I have learned so much from him and know you will, too. It all begins with understanding the power of 100.”
-Jeff Goins, author, The Art of Work

About the Author
An award winning entrepreneur and humanitarian, Shaun King is widely regarded as one of today's leading voices on how social media and a little bit of courage can make our world a radically better place. He speaks a message of hope and action over 150 times a year, has appeared in over 100 national and international press outlets, started and sold three tech companies, and raised over $10 million for causes all over the world. Currently a full-time writer for Daily Kos, Shaun recently won the Mashable Award for the Most Creative Social Good Campaign. An executive coach for a rich variety of leaders, Shaun is married to his high school sweetheart, Rai. Their young family currently lives in Los Angeles, but has called South Africa, Atlanta, Kentucky, and Manhattan home over the past few years.

Excerpt. © Reprinted by permission. All rights reserved.
Power Of 100! PREFACE


I smelled smoke. I tasted my blood and could feel the skin falling off my face. I strained to move my mouth and realized that it was full of glass. Jagged, large chunks of my teeth were missing. I thought I was going to die.

Just moments earlier everything on my checklist for a perfect life seemed to be in place:

New car? Check.

A good credit score? Yes.

Brand-new house? Check that one, too.

A fulfilling job that paid the bills? Check.

A church we loved? Definitely.

Some pocket money? Check.

A happy wife? Check.

A healthy baby? Yes indeed.

Seriously? What more could I ask for?

As I drove down the Kentucky interstate with my wife, Rai (pronounced “Ray”), that wintry Friday evening in November, my heart was full, my mind was clear, and I was one happy dude. We were visiting our family for Thanksgiving and had woken up ridiculously early the following morning to hunt down those insane Black Friday sales, wandering all over Lexington to buy items for our very first family home. We had racked up deals and were scheduled to move into our house back in Atlanta in four days. After dinner, we hopped in the car to drive a couple of miles down the road for a movie date with my brother and his wife.

It seemed like the perfect day.

Blasting from the speakers of the car was a fast-paced gospel song that we loved. I hardly ever listened to gospel music, but this song was our jam! Rai and I were both laughing and screaming the lyrics like crazy. The hook of the song says, “The presence of the Lord is here,” and no one could tell me I didn’t sound exactly like the dude on the record as I sang along with him. When the track ended, I did what any respectable man does when his favorite song ends . . . I reached down and hit the repeat button, so we could sing along just one more time.

In that instant the entire trajectory of my life changed. Within a second of restarting the song, the tires of our sedan hit an invisible patch of black ice. At sixty-five miles per hour the car began to spin out of control right through the middle of the interstate. I kid you not, with every fiber of my heart, soul, hands, and feet I tried to will that car straight, but I just couldn’t do it.

Today, as I write these words, that stretch of road has a guardrail separating northbound and southbound traffic (maybe because of us), but back then it didn’t. Nothing but a steep ditch divided the flow of cars in each direction. Our black Mitsubishi was careening straight for the divide, completely out of control. When we hit the ditch, the impact was so jarring that it alone likely gave us both concussions. Unfortunately, it wasn’t enough to stop my car, and according to eyewitness accounts I read in the police report, we barreled out of the ditch and went airborne (Dukes of Hazzard style) into oncoming traffic.

Seeing the headlights of a large pickup truck coming full steam toward her door, my poor wife screamed out, “We’re going to die!”

It was surreal.

Suddenly, it felt as if a bomb had gone off. I was confused. How could a bomb have gone off in the car? I wondered. It seemed like something had detonated directly before my eyes. Nothing else made any sense. It must have been a bomb!

In a matter of moments my perfect life exploded right in front of me.

Flesh was falling from my face.

I smelled smoke.

My mouth was full of blood and glass.

Jagged chunks of my teeth were missing.

I couldn’t understand everything that was happening. But did I know things were really bad? Absolutely.

Still conscious, I glanced over at my wife and realized that I could hardly see. I tried to ask her if she was okay, but so much was terribly wrong with me. In my mind I wanted to talk to her, but my mouth just refused to form the words.

As the shock of the impact wore off, I realized my glasses were gone, and it felt like something unthinkable had happened to my left eye. I wondered if it was even still there. My wife, barely conscious and apparently in a state of shock, just stared at me. She didn’t move or say a word.

That shook me.

Suddenly, I felt pain, unthinkable pain, covering my entire body and particularly all over my face. The desire to observe my surroundings faded away.

The excruciating pain took over.

Of course a bomb had not gone off in our car that night. Instead, we had collided with a large pickup truck. At the last moment, by no ingenuity of my own, I had been able to swerve just enough to keep the truck from killing my wife as she sat helplessly in the front seat next to me. However, the sheer force of the collision crushed our little car.

I was ejected through the windshield, not headfirst but face-first into the dense glass. To this day, I can’t even believe that’s possible. The instant my face crashed through the thick windshield, we hit a guardrail on the opposite side of the interstate. The blunt impact and miraculously perfect timing flung my body back into the car.

The car was now a mangled mess on the side of the road, my face felt like it was on fire, and I began to roar loud moans of pain. With each wail, I felt weaker and weaker. My whole body was wet. It was my blood.

A man came to my door. Yes! He’s going to save me, I thought. Instead, he simply looked at me and left. My heart sank. The roads were pretty empty that night, and I wondered if anyone else would come and help us. Oddly enough, there was no trace of that man in any of the reports from that evening. One of my “ultra-religious” friends insists that he was an angel of death who came to take me away. Whoever it was, he left me alone there and never returned.

About a minute later, the sweetest woman came to my car. I know for sure that she was human, but I swear she felt like an angel! She couldn’t open the door, but she told me that she was a nurse at the University of Kentucky hospital and that she wasn’t going to leave my side until an ambulance arrived. She said I was very badly injured and that she needed to wrap my mangled face up with a blanket she’d seen in the backseat to hopefully slow my bleeding. My leg felt like it had been crushed somehow, and everything from my shoulders up still seemed like it was on fire.

A police officer arrived and asked me my name and whom to contact in my family. I was able to mumble my name and give him my dear mother’s phone number. Then they cut me out of the car, carefully lifted me onto a stretcher, and put me in the ambulance. I missed my wife immediately. I began to believe that I might never see her again.

What happened in the back of that ambulance for the next fifteen minutes is the reason I’ve written this book and also why I want to help you squeeze value out of every precious moment of every day you have left on earth.

On TV, the paramedics are always so doggone calm and cool. Maybe paramedics are normally that way in real life, too, but the two guys in the back of that ambulance with me were nervous wrecks! I heard them talking about the broken bones in my face. One of the guys said my left leg appeared broken. They wondered aloud if I had a traumatic brain injury. I heard them nervously conferring about my heart rate slowing, and it seemed like I was slipping away.

Was I dying? I saw no white light. My heart was overcome with a heavy sadness. The pain disappeared.

I was only twenty-three years old.

I would never get to see my daughter, Kendi, grow up. She’d never know me. I loved her so much.

Rai had always told me that she wanted to travel the world, and I had hardly even taken her anywhere yet.

We had no money in our savings account.

I felt like a failure. I didn’t even get to tell them good-bye. I was sure that God had plans for my life that required me to live so far beyond that painful night. I was bewildered. Everything became darker, and I found it harder and harder to sustain a coherent thought.

“Stick with us, man!” I heard one of the paramedics yell. I was trying. “We’re going to get you to the hospital, and they’ll take care of you. Just stick with us, bro.”

The two men in the back with me then started arguing with the driver to hurry up. “You’re going too damn slow. You have to hurry up, man,” one of them said to the driver. The driver yelled back, “Shut up! The roads are icy as hell. I can’t drive fast, or we’ll all be like him.”

I found myself just wanting to go to sleep. I was so tired.

At my drowsiest moment, I heard the guys ask each other if they should “charge the paddles,” and I remember being scared to death that they were going to use them on me. To this day, I think my overwhelming fear of the paramedics’ placing those electrically charged paddles on my chest gave me all the motivation I needed to stay conscious.

From that moment forward, I don’t recall anything else the guys said to me or to each other. All I remember is a thought in my head that I kept playing over and over and over again: If I make it to the hospital, I’ll live. If I make it there, everything will be okay.

At that point, my mind turned not to what I could do, but to the hope and prayer that God would just get us safely to the doctors so that I could live.

I did not want to die.

I don’t think I made a grand bargain with God that night, but I remember thinking, If I don’t die, if I make it, if I live, I’m going to give life everything I have from here on out.

As soon as we made it to the University of Kentucky ER, I was overtaken with a feeling of warmth. It’s hard to explain, but I felt a deep sense of inner peace, contentment, and even joy. I could no longer see out of either of my eyes or really feel my face at all. I felt them cutting my clothes off with scissors. Hilariously, I still remember being slightly embarrassed that people were going to see me naked. After examining my body, I heard the ER doctors speaking about the bones in my face being broken and how I would need a plastic surgeon. They ordered immediate CAT scans to determine the extent of the damage.

The damage to my lips, mouth, and teeth was so severe that I wouldn’t be able to speak for much longer once they started working on me. I began begging two different nurses to write a note that said, “I still believe in the goodness of God,” and place it on my chest. They both thought I was delirious and refused to write it. I asked several more times, but I am sure I sounded ridiculous. Finally, I felt and grabbed the hand of a third person and asked them to please write the note. They relented, grabbed a piece of paper, wrote the words just as I asked, and placed it right on my chest.

For the next three days I could hardly think straight, but I remember asking everybody who came into contact with me to read that note.

As the doctors sent me through the first set of CAT scans, the results shocked everyone, because nothing was broken. Seeing how badly shredded every inch of my face was, the doctors ordered another set of scans. They, too, came back with the same results. In spite of flying into the windshield face-first, going full speed, and being hit by a truck, not one bone in my body, not even my nose, was broken.

Then and there, the doctors started calling me a “miracle man.”

Kneeling down to talk to me on the stretcher, the plastic surgeon said, “I had already asked my team to get plates and wires ready for your face, but it appears that we were all wrong and that you aren’t going to need them after all. Rarely do people in accidents like yours—being projected through the windshield—rarely do those people live. When they do live, they are almost always paralyzed and need a series of reconstructive surgeries to attempt to repair the damage. It appears that all I have to do is stitch you up.”

I pointed at the note on my chest. I couldn’t muster a smile, but I knew then and there that something miraculous had indeed happened to me. I can’t explain it.

Was I healed?

Was everybody wrong with their diagnoses?

How did my face crash completely through that rock-hard windshield without breaking a single bone?

Why me?

For the next two hours, the plastic surgeon worked magic on my face. He started out by giving me a few extremely excruciating shots of Novocain to dull the pain of the procedure. When it was all said and done, he ended up giving me over forty shots. Bit by bit, he pulled over one hundred small shards of glass out of my face. During the next four weeks I removed over a dozen more.

My left eyelid had been cut off almost completely, and he sewed it back on first. A huge chunk of my bottom lip was dangling. He fixed that next. On the left side of my face was the most severe injury. My cheek had been torn open from the corner of my mouth all the way up to my left ear. In all, my face required over four hundred stitches to be put back together again. My eyes would be swollen shut for days. I couldn’t eat. My teeth were all jacked up. People who see pictures of me taken several days later say I looked like a dead man. Physically, I felt dead, but something deep inside of me was awakened. In so many ways, I now view my life in two phases: BTA (Before the Accident) and ATA (After the Accident).

I valued life before all this happened. I was a good enough guy and did some decent stuff here and there, but something essential changed about me after the car crash. It’s this transformation that allows me to look back on that brutal brush with death and not regret that I went through it. Yes, it took a lot out of me. Physically, I never fully recovered. I’m actually in pain as I type these very words. However, what I gained was so much greater than what was taken from me.

Now I live like tomorrow’s not promised.

Now I live like every day is a blessing full of 1,440 minutes to pursue my purpose and passion.

Now I refuse to allow the excuses in my mind to grow into giants that keep me from living up to my full potential.

Having come so close to death, I now value just how precious life truly is and want to ride what God gave me until the wheels fall off. The American dream alone is not enough for me anymore.

Just a few weeks after the accident, with my body still hurting and my face looking so awful that people everywhere stopped to stare at me, I found my heart, soul, and mind energized anew. I’ve hardly stopped for a break since.

At first, I had no method to my madness. I found myself energized, but with no real system to effectively pursue what it was on my heart to accomplish in the world.

I’ve had some unbelievable successes, and I’ve also learned painful lessons through failures so low I can hardly stand to think of them. This book is about those hard-earned lessons I learned, the practical systems that I’m using now, and how they can help you rapidly accelerate the impact you make with the time you have. My hope is that together we will start a movement of thousands (maybe millions!) of people setting and pursuing their life goals with reckless abandon.

Most helpful customer reviews

2 of 2 people found the following review helpful.
Lesson 101: Don't buy this book
By S. Reynolds
Purchased a while back after reading some "stellar" reviews. Regardless "The Power of 100" is merely a rough draft of an itemized list of common "things" to "improve" your life. The author makes a poor attempt to motivate the reader to make their bed in the morning citing that it will invigorate you to take over the world.

Between the misspellings and elementary level typos, I would suggest saving your money. This is just a poor attempt at creating another self-help book.

6 of 8 people found the following review helpful.
I highly recommend it for any whoever has or had a dream
By De'Marcus Crump
I've been looking for that extra motivation & guideline to pursue my life goals instead of just listing them, this book is a must read. I highly recommend it for any whoever has or had a dream!

10 of 16 people found the following review helpful.
Pursue life goals with abandon
By Joan N.
King wants to see people pursue life goals with reckless abandon. He has written this book to help us do that.

He encourages us to write 100 goals across seven key areas of life. He then presents a strategy to go after those hopes and dreams.

The seven key areas are: Generosity, Health and Fitness, Career and Finance, Spirit and Emotion, Travel, Friends and Family, Accomplishment and Experience. He includes a chapter on each of these areas to help us fine tune our goals. He is adamant that we cannot be successful in just one or two of these areas. Our life must be well balanced with success in all the seven areas. Why start with generosity? “A life grounded in generosity is a life well lived,” King writes.

He encourages us to make one outrageous goal for each area. He then suggests subgoals of easier attainment and shorter time span. The result is 100 goals. Knowing that writing goals is just the beginning, he offers a strategy to put fire under the goals and keep it going. He has some advice on making the goals stick and tips on overcoming adversity.

If you are looking for a plan to reset your life, this is a good book to read. He addresses all the issues that keep us from making the mental shift to living life on purpose. He looks at the fears we might have and the consequences of living in fear. He confronts the excuses of no money and no time.

One might think this is just another book on setting goals but the real force of this one is King's personal story. He was severely beaten in high school resulting in spinal operations. As a young married he was in a severe car accident. He lives daily with pain. But he does not let that stop him from achieving success.

Like any other motivational book, reading it is not enough. One has to actually do what the book suggests. King's own life story is a great motivation.

I received a complimentary egalley of this book from the publisher for the purpose of an independent and honest review.

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Sabtu, 19 Desember 2015

## Download Ebook The Brain's Way of Healing: Remarkable Discoveries and Recoveries from the Frontiers of Neuroplasticity, by Norman Doidge

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The Brain's Way of Healing: Remarkable Discoveries and Recoveries from the Frontiers of Neuroplasticity, by Norman Doidge

Now a New York Times Bestseller!

The bestselling author of The Brain That Changes Itself presents astounding advances in the treatment of brain injury and illness


Winner of the 2015 Gold Nautilus Award in Science & Cosmology


In The Brain That Changes Itself, Norman Doidge described the most important breakthrough in our understanding of the brain in four hundred years: the discovery that the brain can change its own structure and function in response to mental experience—what we call neuroplasticity.

His revolutionary new book shows, for the first time, how the amazing process of neuroplastic healing really works. It describes natural, non-invasive avenues into the brain provided by the forms of energy around us—light, sound, vibration, movement—which pass through our senses and our bodies to awaken the brain’s own healing capacities without producing unpleasant side effects. Doidge explores cases where patients alleviated years of chronic pain or recovered from debilitating strokes or accidents; children on the autistic spectrum or with learning disorders normalizing; symptoms of multiple sclerosis, Parkinson’s disease, and cerebral palsy radically improved, and other near-miracle recoveries. And we learn how to vastly reduce the risk of dementia with simple approaches anyone can use.

For centuries it was believed that the brain’s complexity prevented recovery from damage or disease. The Brain’s Way of Healing shows that this very sophistication is the source of a unique kind of healing. As he did so lucidly in The Brain That Changes Itself, Doidge uses stories to present cutting-edge science with practical real-world applications, and principles that everyone can apply to improve their brain’s performance and health.

  • Sales Rank: #31909 in Books
  • Published on: 2015-01-27
  • Released on: 2015-01-27
  • Original language: English
  • Number of items: 1
  • Dimensions: 9.38" h x 1.38" w x 6.38" l, 1.00 pounds
  • Binding: Hardcover
  • 409 pages

Review
#1 Globe and Mail Nonfiction Bestseller
#1 Toronto Star Nonfiction Bestseller 

Praise for The Brain’s Way of Healing
 
“Brilliant and highly original. Neurology used to be considered a depressing discipline with patients often displaying fascinating but essentially untreatable symptoms and disabilities. Drawing on the last three decades of research, Doidge challenges this view, using vivid portraits of patients and their physicians. The book is a treasure trove of the author’s own deep insights and a clear bright light of optimism shines through every page.”
—V. S. Ramachandran, MD, PhD, neurologist, neuroscientist, and author of The Tell-Tale Brain (W. W. Norton, 2011), Director, UCSD Center for Brain and Cognition 

“A tour de force. In one of the most riveting books on the human brain and its mystery powers ever written, Doidge addresses the role of alternative medical therapies to reset and re-sync the dynamic patterns of ‘energy in our brain, whit the ability to restore relatively normal health to those whose fate seems hopeless. . . . These are people that traditional medicine all but abandoned as . . . untreatable. But they were rescued. . . . It’s possible to start anywhere in the book and be mesmerized.”
—Huffington Post

“An exciting overview of powerful new neuroscience theories that connect mind, body, and soul . . . In this age of distraction and unnatural environments and actions—like staring at screens all day—brain science offers all kinds of useful techniques to care for our infinitely complex selves. Norman Doidge’s work is a Michelin Guide to this hopeful new trove of knowledge and insight.”
—Boston Globe, USA
 
“Stunning . . . The Brain’s Way of Healing is another groundbreaking book by Norman Doidge.
 His style keeps you going into the deep dark secrets
of how the brain works. . . . [H]is reframing of remarkable treatments
that I had categorized as gimmicky left me fascinated and humbled. He brings a whole new level of insight into the body, brain, mind connection
that will impact any reader.”
— John J. Ratey, MD, Clinical Associate Professor of Psychiatry,
Harvard Medical School and author of Driven to Distraction
 
“Bold, remarkable . . . paradigm challenging. The Brain’s Way of Healing is brilliantly organized, scientifically documented, and a beautifully written narrative that captivates the reader, who is left with the profound message that the brain, similar to other organs, can heal.” 
—Stephen W. Porges, PhD, Indiana University Bloomington and author of The Polyvagal Theory 

“Doidge’s book is filled with compelling stories about the power of ingenious technologies and disciplined awareness methods generated by innovators who transcended their own brain challenges, and who now use them to help others make radical improvements in conditions often deemed hopeless. It points to a future of remarkable and unprecedented brain healing.”
—Martha Herbert, MD, PhD, Neurologist, Harvard Medical School, and Massachusetts General Hospital, author of The Autism Revolution
 
“The Brain’s way of Healing is a stunner—the sort of book you want to read several times, not because it is difficult to understand, but because it opens up so many novel and startling avenues into our potential to heal. Norman Doidge enthralls us with a rich combination of lucidly explained brain research and pioneering new (and some not so new, but not widely known) approaches to recovery. With an eloquence reminiscent of Oliver Sacks, Doidge bolsters the latest advances in brain science with a series of extraordinary case histories of people for whom all hope seemed to be lost, but who healed as a result of great personal courage, and by changing the ways their bodies and brains processed sensations and movement. This hopeful book demonstrates that a variety of sensory inputs—light, sound, electricity, vibration, movement, and thought—can awaken the brain’s attention processors, and thereby allow even the most afflicted to (re)gain ownership of their lives. 
—Bessel van der Kolk MD, Medical Director, the Trauma Center, Brookline MA; Professor of Psychiatry, Boston University School of Medicine; Author of The Body keeps the Score: Mind, Brain and Body in the healing of Trauma

“The book offers real hope to individuals suffering from diverse chronic conditions. It shows in terms of graphic personal stories that we truly do not yet know the limits of what is possible in rehabilitation. The book also has a number of creative integrations of the data that will be of interest to neuroscientists.”
—Edward Taub, Ph.D., Behavioral Neuroscientist, University Professor,University of Alabama at Birmingham, Director, UAB CI Therapy Research Group and Taub Training Clinic
 
“Everyone who has a brain could benefit from reading Doidge’s book.”
—The Columbus Dispatch
 
“A vivid, robust and optimistic read . . . an essential addition to our growing understanding of the mind-brain-body connection. Doidge argues quite convincingly that when the brain is damaged or incompletely formed, whether from stroke, multiple sclerosis, traumatic brain injury, autism, ADHD or a host of other conditions, it’s entirely possible to “rewire” the circuits by training a different part of the brain to take over the task. . . . He's positively elegant in his crystalline explanations of brain science for a lay audience.”
—Toronto Star, Canada
 
 “This is a book of miracles: an absorbing compendium of unlikely recoveries from physical and mental ailments offers evidence that the brain can heal. Fascinating . . . brings to mind Oliver Sacks.”
—Guardian
 
“Dazzling . . . In friendly vignettes reminiscent of Oliver Sacks’s case studies, Doidge chronicles the heroic efforts of patients with a wide variety of apparently intractable ailments, from chronic pain to multiple sclerosis. . . . Each of Doidge’s examples suggests tangible treatment ideas for patients who may have thought they were out of options. Doidge’s penchant for considering unconventional approaches to healing offers hope for all.”
—Bookpage, USA
 
“Beautifully written . . . inspiring . . . merging scientific information into timeless and fascinating personal stories . . . The Brain's Way of Healing grabs onto the reader at once and compels them to keep reading. This is an important and encouraging book.”
—The Vancouver Sun, Canada
 
“Exhilarating science . . . In an era of ever-increasing medicalisation of the human mind, and the medication of it, the appeal of neuroplasticity outlined by Doidge is addictive. It is inspiring, page-turning stuff.”
—Sunday Times, London

“A fascinating study on brain science that shows the way to major therapeutic discoveries.”
—Library Journal

About the Author
NORMAN DOIDGE, M.D., is a psychiatrist, psychoanalyst, and New York Times bestselling author. He is on the research faculty at Columbia University’s Center for Psychoanalytic Training and Research in New York City and on the faculty of the University of Toronto’s Department of Psychiatry as well. He lives in Toronto.

Excerpt. © Reprinted by permission. All rights reserved.

Note to the Reader

ALL OF THE NAMES OF people who have undergone neuroplastic transformations are real, except in the few places indicated, and in the cases of children and their families.

The Notes and References section at the end of the book includes comments on finer points in the chapters.

Preface

THIS BOOK IS about the discovery that the human brain has its own unique way of healing, and that when it is understood, many brain problems thought to be incurable or irreversible can be improved, often radically, and in a number of cases, as we shall see, cured. I will show how this process of healing grows out of the highly specialized attributes of the brain—attributes once thought to be so sophisticated that they came at a cost: that the brain, unlike other organs, could not repair itself or restore lost functions. This book will show that the reverse is true: the brain’s sophistication provides a way for it to repair itself and to improve its functioning generally.

This book begins where my first book, The Brain That Changes Itself, ended. That book described the most important breakthrough in understanding the brain and its relationship to the mind since the beginning of modern science: the discovery that the brain is neuroplastic. Neuroplasticity is the property of the brain that enables it to change its own structure and functioning in response to activity and mental experience. That book also described many of the first scientists, doctors, and patients to make use of this discovery to bring about astonishing transformations in the brain. Until then, these transformations had been almost inconceivable, because for four hundred years, the mainstream view of the brain was that it could not change; scientists thought the brain was like a glorious machine, with parts, each of which performed a single mental function, in a single location in the brain. If a location was damaged—by a stroke or an injury or a disease—it could not be fixed because machines cannot repair themselves or grow new parts. Scientists also believed the circuits of the brain were unchangeable or “hardwired,” meaning that people born with mental limitations or learning disorders were in all cases destined to remain so. As the machine metaphor evolved, scientists took to describing the brain as a computer and its structure as “hardware” and believed the only change that aging hardware undergoes is that it degenerates with use. A machine wears out: use it, and lose it. Thus, attempts by older people to preserve their brains from decline by using mental activity and exercise were seen as a waste of time.

The neuroplasticians, as I called the scientists who demonstrated that the brain is plastic, refuted the doctrine of the unchanging brain. Equipped, for the first time, with the tools to observe the living brain’s microscopic activities, they showed that it changes as it works. In 2000 the Nobel Prize in Physiology or Medicine was awarded for demonstrating that as learning occurs, the connections among nerve cells increase. The scientist behind that discovery, Eric Kandel, also showed that learning can “switch on” genes that change neural structure. Hundreds of studies went on to demonstrate that mental activity is not only the product of the brain but also a shaper of it. Neuroplasticity restored the mind to its rightful place in modern medicine and human life.

 • • • 

THE INTELLECTUAL REVOLUTION DESCRIBED IN The Brain That Changes Itself was the beginning. Now, in this book, I tell of the astounding advances of a second generation of neuroplasticians who, because they did not have the burden of proving the existence of plasticity, have been liberated to devote themselves to understanding and using plasticity’s extraordinary power. I have traveled to five continents to meet with them—the scientists, clinicians, and their patients—in order to learn their stories. Some of these scientists work in the cutting-edge neuroscience labs of the Western world; others are clinicians who have applied that science; and still others are clinicians and patients who together stumbled upon neuroplasticity and perfected effective treatment techniques, even before plasticity had been demonstrated in the lab.

One patient after another in this book had been told they would never get better. For decades, the term healing was seldom used in connection with the brain, as it was with other organ systems, such as the skin or the bones or the digestive tract. While organs such as the skin, liver, and blood could repair themselves by replenishing their lost cells using stem cells to function as “replacement parts,” no such cells were found in the brain, despite decades of searching. Once neurons were lost, no evidence could be found that they were ever replaced. Scientists tried to find ways to explain this in evolutionary terms: in the course of evolving into an organ with millions of highly specialized circuits, the brain simply lost the ability to supply those circuits with replacement parts. Even if neuronal stem cells—baby neurons—were to be found, how, it was wondered, would they be of any help? How would they ever integrate into the sophisticated but dizzyingly complex circuits of the brain? Because it wasn’t thought possible to heal the brain, most treatments used medication to “prop up the failing system” and decrease symptoms by temporarily changing the chemical balance in the brain. But stop the medication, and the symptoms would return.

It turns out that the brain is not too sophisticated for its own good after all. This book will show that this very sophistication, which involves brain cells being able to constantly communicate electrically with one another, and to form and re-form new connections, moment by moment, is the source of a unique kind of healing. True, in the course of specializing, important reparative abilities, available to other organs, were lost. But others were gained, and they are mostly expressions of the brain’s plasticity.

 • • • 

EACH OF THE STORIES IN this book will illustrate a different facet of these neuroplastic ways of healing. The more I immersed myself in these different kinds of healing, the more I began to make distinctions among them and to see that some of the approaches targeted different stages of the healing process. I have proposed (in Chapter 3) a first model of the stages of neuroplastic healing, to help the reader see how they all fit together.

Just as the discoveries of medication and surgery led to therapies to relieve a staggering number of conditions, so does the discovery of neuroplasticity. The reader will find cases, many very detailed, that may be relevant to someone who has, or cares for someone who has experienced, chronic pain, stroke, traumatic brain injury, brain damage, Parkinson’s disease, multiple sclerosis, autism, attention deficit disorder, a learning disorder (including dyslexia), a sensory processing disorder, a developmental delay, a part of the brain missing, Down syndrome, or certain kinds of blindness, among others. In some of these conditions, complete cures occur in a majority of patients. In other cases, illnesses that are moderate to severe can sometimes become milder. I shall describe parents who were told that their autistic or brain-damaged children would never complete a normal education, but who saw them do so, graduate, even go to university, become independent, and develop deep friendships. In other situations, an underlying serious illness remains, but its most troubling symptoms are radically reduced. In still others, the risk of getting an illness such as Alzheimer’s (in which the brain’s plasticity decreases) is significantly reduced (discussed in Chapters 2 and 4), and ways of increasing plasticity are introduced.

 • • • 

MOST OF THE INTERVENTIONS IN this book make use of energy—including light, sound, vibration, electricity, and motion. These forms of energy provide natural, noninvasive avenues into the brain that pass through our senses and our bodies to awaken the brain’s own healing capacities. Each of the senses translates one of the many forms of energy around us into the electrical signals that the brain uses to operate. I will show how it is possible to use these different forms of energy to modify the patterns of the brain’s electrical signals and then its structure.

In my travels, I saw examples of sounds played into the ear, to treat autism successfully; vibration on the back of the head, to cure attention deficit disorder; gentle electrical stimulators tingling on the tongue, to reverse symptoms of multiple sclerosis and heal stroke; light shone onto the back of the neck to treat brain injury, into the nose to help sleep, or administered intravenously to save a life; and the slow, soft movements of the human hand over the body to cure a girl, born missing a huge section of her brain, of cognitive problems and near paralysis. I will show how all these techniques stimulate and reawaken dormant brain circuits. Among the most effective ways to do so is by using thought itself to stimulate brain circuits, which is why most of the interventions I witnessed paired mental awareness and activity with the use of energy.

The use of energy and the mind together to heal, while novel in the West, has of course been central to traditional Eastern medicine. Only now are scientists beginning to glimpse how these traditional practices may work in terms of Western models, and it is remarkable the extent to which almost all the neuroplasticians I visited were deepening their understanding of how to use neuroplasticity by linking insights from Western neuroscience to insights from Eastern health practices, including traditional Chinese medicine, ancient Buddhist meditation and visualization, martial arts such as tai chi and judo, yoga, and energy medicine. Western medicine has long dismissed Eastern medicine—practiced by billions of people for millennia—and its claims, often because it seemed too far-fetched to accept that the mind can alter the brain. This book will show how neuroplasticity provides a bridge between humanity’s two great but hitherto estranged medical traditions.

 • • • 

IT MAY SEEM ODD THAT the ways of healing described in this book so frequently use the body and the senses as primary avenues to pass energy and information into the brain. But these are the avenues the brain uses to connect with the world, and so they provide the most natural and least invasive way to engage it.

One reason clinicians have overlooked using the body to treat the brain is the recent tendency to see the brain as more complex than the body and as the essence of who we are. In this common view, “We are our brains,” the brain is the master controller, and the body is its subject, there to follow the master’s orders.

This view was accepted because 150 years ago neurologists and neuroscientists, in one of their greatest accomplishments, began to demonstrate the ways in which the brain can control the body. They learned that if a stroke patient couldn’t move his foot, the problem wasn’t in his foot, as he felt it to be, but in the brain area that controlled the foot. Through the nineteenth and twentieth centuries, neuroscientists mapped where the body was represented in the brain. But the occupational hazard of brain mapping was to begin to believe that the brain was “where all the action is”; some neuroscientists began to talk about the brain almost as though it were disembodied, or as though the body were a mere appendage to it, mere infrastructure to support the brain.

But that view of an imperial brain is not accurate. Brains evolved many millions of years after bodies did, to support bodies. Once bodies had brains, they changed, so body and brain could interact and adapt to each other. Not only does the brain send signals to the body to influence it; the body sends signals to the brain to affect it as well, and thus there is constant, two-way communication between them. The body abounds with neurons, the gut alone having 100 million. Only in anatomy textbooks is the brain isolated from the body and confined to the head. In terms of the way it functions, the brain is always linked to the body and, through the senses, to the world outside. Neuroplasticians have learned to use these avenues from the body to the brain to facilitate healing. Thus, while a person who has had a stroke may not be able to use his foot because the brain is damaged, moving the foot can, at times, awaken dormant circuits in the injured brain. The body and mind become partners in the healing of the brain, and because these approaches are so noninvasive, side effects are exceedingly rare.

 • • • 

IF THE IDEA OF POWERFUL and yet noninvasive treatments for brain problems seems too good to be true, it is for historical reasons. Modern medicine began with modern science, which was conceived as a technique for the conquest of nature, for—as one of its founders, Francis Bacon, put it—“the relief of man’s estate.” This idea of conquest gave rise to the many military metaphors that are used in everyday medical practice, as Abraham Fuks, a former dean of medicine at McGill University, shows. Medicine became a “battle” against disease. Drugs are “magic bullets”; medicine fights “the war against cancer” and “combats AIDS,” with “doctor’s orders,” from the “therapeutic armamentarium.” This “armamentarium,” as physicians call their bag of therapeutic tricks, honors invasive high-tech treatments as more scientifically serious than noninvasive ones. There is definitely a time for a martial attitude in medicine, especially in emergency medicine: if a blood vessel in the brain bursts, the patient needs invasive surgery and a neurosurgeon, with nerves of steel, to operate. But the metaphor creates problems too, and the very idea that it is possible to “conquer” nature is a fond, naïve hope.

In this metaphor, the patient’s body is less an ally than the battlefield, and the patient is rendered passive, a helpless bystander, as he watches the confrontation that will determine his fate between the two great antagonists, the doctor and the disease. The attitude has even come to influence the ways many physicians now talk to their patients, interrupting their story as they speak, because often the high-tech physician is less interested in their narrative than in their lab test.

 • • • 

NEUROPLASTIC APPROACHES, ON THE OTHER hand, require the active involvement of the whole patient in his or her own care: mind, brain, and body. Such an approach recalls the heritage not only of the East but of Western medicine itself. The father of scientific medicine, Hippocrates, saw the body as the major healer, and the physician and patient working together with nature, to help the body activate its own healing capacities.

In this approach, the health professional not only focuses on the patient’s deficits, important as they may be, but also searches for healthy brain areas that may be dormant, and for existing capacities that may aid recovery. This focus doesn’t advocate naïvely replacing the neurological nihilism of the past with an equally extreme neurological utopianism—replacing false pessimism with false hope. To be valuable, discoveries of new ways of healing the brain do not have to guarantee that all patients can be helped all the time. And often, we simply don’t know what will happen, until the person, with the guidance of a knowledgeable health professional, gives the new approaches a try.

The word heal comes from the Old English haelan and means not simply “to cure” but “to make whole.” The concept is very far from the idea of “cure” in the military metaphor, with its associated ideas of divide and conquer.

What follow are stories of people who have transformed their brains, recovered lost parts of themselves, or discovered capacities within that they never knew they had. But the true marvel is less the techniques than the way that, through millions of years, the brain has evolved, with sophisticated neuroplastic abilities and a mind that can direct its own unique restorative process of growth.

Chapter 1

Physician Hurt, Then Heal Thyself

Michael Moskowitz Discovers That Chronic Pain Can Be Unlearned

MICHAEL MOSKOWITZ, M.D., is a psychiatrist-turned-pain-specialist who has often been forced to use himself as a guinea pig.

Burly, buoyant, and six feet tall, Moskowitz looks a decade younger than his sixty-odd years. He wears oval John Lennon glasses; has slightly long, graying curls of hair, a mustache, and a beatnik’s soul patch beneath his lower lip. He smiles a lot. I first saw Moskowitz in Hawaii, where he was moderating a serious and sober panel at the American Academy of Pain Medicine. He was in a suit, but he seemed too big a personality, too boyish, to be wearing one. A few hours later, on the beach, he wore shorts and wild colors and was unconstrained, joking, bringing out the boyishness in me. We somehow got into a conversation about how physicians—so often interested in diagnostic categories, which are supposed to be like ideal forms, unvarying from person to person—can easily forget how different people really are. “Like me, for instance,” he said.

“How so?” I asked.

“My anatomy.” Whereupon he pulled off his Hawaiian shirt to proudly display that his chest bore not two but three male nipples.

“A true freak of nature,” I joked. “Does it do you any good?”

Like the medical students we once were, we plunged into a juvenile, jocular debate: because nipples on the male are useless, which of us was more useless, the one with two or the one with three? Thus we got acquainted, and everything about him—his love of singing and playing the guitar, his hugely engaging manner and youthful voice—suggested that he was still very much a creature of the happy-go-lucky world of love, music, and easygoing, carefree abandon of the 1960s in which he came of age.

Not so.

Moskowitz spends most of his time immersed in the chronic pain of others. Their agony is unknown to most people, in part because they are often so drained by their pain that they stop wasting what little energy they have to express distress to those who can’t help them. Chronic pain may be invisible on a patient’s face, or it can give its victim a drawn, ghostly presence, because it sucks the life out of a person. Moskowitz, on the other hand, gets to share in its full burden. He and another psychiatrist-turned-pain-specialist, his long-standing southern friend Robert “Bobby” Hines, M.D., set up a pain clinic, Bay Area Medical Associates, in Sausalito, California, which treats West Coast patients with “intractable pain”: those who have tried all other treatments, including all known drugs, “nerve blocks” (regular anesthetic injections), and acupuncture. The patients who end up there failed to recover in all known mainstream and alternative treatments and have usually been told, “Everything that can be done for you has been done.”

“We are the end of the line,” Moskowitz says. “We are where people come to die with their pain.”

Moskowitz came to pain medicine after working for years as a psychiatrist. He has all the professional and scholarly credentials: he was on the examination council for the American Board of Pain Medicine (setting the exams for doctors in pain medicine); he is a former chairman of the education committee of the American Academy of Pain Medicine; and he has an advanced psychiatric fellowship in psychosomatic medicine. But Moskowitz became a world leader in the use of neuroplasticity for treating pain only after making some discoveries while treating himself.

A Lesson in Pain—The Kill Switch

On June 26, 1999, when he was forty-nine, Moskowitz and a friend snuck into the local San Rafael dump because he had heard that army tanks and other armored vehicles were being stored there for the Fourth of July parade. He couldn’t resist the boyish pleasure of climbing up onto a tank turret. When he jumped off, a metal prong for holding gas cans on the tank’s side caught his corduroys. As he fell, one leg shot up five feet, and he heard three popping sounds: his femur, the longest bone in the body, was cracking. When he looked down at his leg, he saw it was pointed way to the left, at a ninety-degree angle to the other leg. “I was a bit too old to be on tanks and a jeep. When I spoke afterward to a friend who was a personal injury lawyer, he said, ‘You would have a great case if you were seven.’”

As a pain physician, he used the situation to observe a phenomenon that he had taught his students about but had never experienced; it would become central to his neuroplastic research. Immediately after he fell, his pain was a true 10 out of 10—that is, 10/10, as pain physicians measure it. Pain is rated from 0/10 to 10/10 (10 is being dropped into boiling oil). He had never known whether he himself would be able to stand a true 10. He realized he could.

“The first thing I thought was: how will I get to work Monday?” he told me. “The second thing I realized, while lying motionless on the ground waiting for the ambulance, was that once I stopped moving, I had literally no pain at all. I thought, ‘Wow, this really does work! My brain simply shut off the pain—something I had been teaching my students for years. I had a firsthand experience that the brain, all on its own, can eliminate pain, just as I, a conventional pain specialist, had tried to do for patients by using drugs, injections, and electrical stimulation. As long as I didn’t move, the pain was zero within about a minute.

“When the ambulance came, they gave me six milligrams of IV morphine. I said, ‘Give me another eight.’ They said, ‘We can’t,’ and I said, ‘I’m a pain doctor,’ so they did, but when they moved me it was ten out of ten.”

The brain can shut pain off because the actual function of acute pain is not to torment us but to alert us to danger. True, the word pain comes from the ancient Greek poine, which means “penalty,” via the Latin poena, which means “punishment,” but biologically, pain is not punishment for punishment’s sake. The pain system is the hurt body’s implacable advocate, a reward and penalty signaling system. It penalizes us when we are about to do something that might further damage our already injured body, and it rewards us with relief when we stop.

As long as Moskowitz didn’t move, he was in no danger, so far as his brain could tell. He also knew that the “pain” was never really in the leg itself. “All my leg did was send signals to my brain. We know from general anesthesia, which puts the higher parts of the brain to sleep, that if the brain doesn’t process these signals, there is no pain.” But general anesthesia has to render us unconscious to eliminate pain; here he was, lying in agony on the ground, and in one moment, his completely conscious brain turned all his pain off. If only he could learn how to flip that switch for his patients!

But it wasn’t just movement that posed a danger for Moskowitz. While waiting for the ambulance, he nearly died, because he bled about half of his entire blood volume into his leg, so it ballooned to twice the normal size: “my leg was the size of my waist.” With all his blood pooling in his leg for hours, it was a miracle he didn’t die from insufficient blood supply to his vital organs. But he made it to the hospital, where “the surgeon put the largest plate they had into my leg and said that if they had needed one more screw, they would have had to amputate.”

During the surgery he almost died two more times. First he threw off an embolus—a blood clot—that could have lodged in his lungs or brain. Then the catheter implanted to drain his urine pierced his prostate, and he spiked a high fever and went into septic shock—a life-threatening condition in which the body is overwhelmed by infection. His blood pressure fell to 80/40.

Yet he survived—and learned another pain lesson: the wise use of sufficient morphine during his acute pain prevented his nerves from being chronically stimulated and saved him from developing a chronic pain syndrome. (This was the reason he requested more morphine when his acute pain was not covered.) Despite the severity of the accident, as the years have passed, he has had very little pain in the leg, and he can walk, about a mile and a half, as we did along the beach in Hawaii, without experiencing pain.

The fact that the brain has the ability to turn pain off so suddenly goes against our “commonsense” experience that pain comes from the body. The traditional scientific view of pain, as formulated by the French philosopher René Descartes four hundred years ago, was that when we are hurt, our pain nerves send a one-way signal up to the brain, and the intensity of the pain is proportional to the seriousness of our injury. In other words, pain files an accurate damage report about the extent of the body’s injury, and that the role of the brain is to simply accept that report.

But that view was overturned in 1965, when the neuroscientists Ronald Melzack (a Canadian who studied phantom limbs and pain) and Patrick Wall (an Englishman who studied pain and plasticity) published the most important article in the history of pain, “Pain Mechanisms: A New Theory.” Wall and Melzack argued that the pain perception system is spread throughout the brain and spinal cord, and that the brain, far from being a passive recipient, controls how much pain we feel. Their “gate control theory of pain” proposed that when pain messages are sent from damaged tissue through the nervous system, they must pass through several controls, or “gates,” starting in the spinal cord, before they get to the brain. These messages ascend to the brain only if the brain gives them “permission” to do so, after determining whether they are important enough to be let through. (When President Reagan was shot through the chest in 1981, he initially just stood there, and neither he nor his Secret Service men knew he had been shot. As he later joked, “I had never been shot before, except in the movies. Then you always act as though it hurts. Now I know that does not always happen.”) If “permission is granted” for the signal to proceed to the brain, a gate will open and increase our feeling of pain by allowing certain neurons to turn on and transmit their signals. But the brain can also close a gate and block the pain signal by releasing endorphins, the narcotics made by our bodies to quell pain.

Before his accident, Moskowitz taught the latest versions of the gate theory to his residents, and that switches control the gates. But knowing such switches exist is one thing; knowing how to turn them off when you are lying in agony is another.

Another Lesson in Pain—Chronic Pain Is Plasticity Gone Wild

Moskowitz’s tank accident wasn’t the first time he developed important insights about pain by having it himself. Several years earlier a pain in the neck, caused by a water-skiing accident, taught him another lesson, one that helped him understand the role of neuroplasticity in pain. In 1994, while water-skiing with his daughters, big-kid Moskowitz was speeding, splashing, and pounding at forty miles an hour in an inflated inner tube, when he flipped over and hit the water with his head bent backward. The resulting pain persisted. It was often an 8/10, on many days making it impossible for him to work. It soon dominated his life as no pain ever had. Morphine and other heavy-duty painkillers, and all the known treatments—physical therapy, traction (stretching the neck), massage, self-hypnosis, heat, ice, rest, anti-inflammatory drugs—barely touched it. That pain haunted and tormented him for thirteen years, becoming more severe as time passed.

He was fifty-seven when he hit rock bottom with his neck pain and began researching the discovery that the brain was neuroplastic and relating it to pain. The idea that chronic pain was caused by a neuroplastic event of the brain had been proposed by the German physiologist Manfred Zimmermann in 1978, but as neuroplasticity would remain generally unaccepted for another twenty-five years, Zimmermann’s idea was hardly known, and its applications to treat pain unexplored.

Acute pain alerts us to injury or disease by sending a signal to the brain, saying “This is where you are hurt—attend to it.” But sometimes an injury affects both our bodily tissues and the neurons in our pain system, including those in the brain and spinal cord, resulting in neuropathic pain (sometimes called central pain because the brain and spinal cord together make up our central nervous system).

Neuropathic pain occurs because of the behavior of neurons that make up our brain maps for pain. The external areas of our body are represented in our brain, in specific processing areas, called brain maps. Touch a part of the body’s surface, and a specific part of the brain map, devoted to that spot, will start to fire. These maps for the body’s surface are organized topographically, meaning that areas that are adjacent on the body are generally adjacent on the map. When the neurons in our pain maps get damaged, they fire incessant false alarms, making us believe the problem is in our body when it is mostly in our brain. Long after the body has healed, the pain system is still firing. The acute pain has developed an afterlife: it becomes chronic pain.

To understand how chronic pain develops, it’s helpful to know about the structure of neurons. Each neuron has three parts: the dendrites, the cell body, and the axon. The dendrites are treelike branches that receive input from other neurons. The dendrites lead into the cell body, which sustains the life of the cell and contains its DNA. Finally, the axon is a living cable of varying lengths (from microscopic ones in the brain to others that run down to the legs and can be three feet long). Axons are often compared to wires because they carry electrical impulses at very high speeds (from 2 to 200 miles per hour) toward the dendrites of neighboring neurons. A neuron can receive two kinds of signals: ones that excite it (excitatory signals) and ones that inhibit it (inhibitory signals). When a neuron receives enough excitatory signals, it will fire off its own signal. When it receives enough inhibitory signals, it becomes less likely to fire.

Axons don’t quite touch the neighboring dendrites. They are separated by a microscopic space called a synapse. Once an electrical signal gets to the end of the axon, it triggers the release of a chemical messenger, called a neurotransmitter, into the synapse. The chemical messenger floats over to the dendrite of the adjacent neuron, exciting or inhibiting it. When we say that neurons “rewire” themselves, we mean that alterations occur at the synapse, strengthening and increasing, or weakening and decreasing, the number of connections between the neurons.

One of the core laws of neuroplasticity is that neurons that fire together wire together, meaning that repeated mental experience leads to structural changes in the brain neurons that process that experience, making the synaptic connections between those neurons stronger.* In practical terms, when a person learns something new, different groups of neurons get wired together. As a child learns the alphabet, the visual shape of the letter A is connected with the sound “ay.” Each time the child looks at the letter and repeats the sound, the neurons involved “fire together” at the same time, and then “wire together”; the synaptic connections between them are strengthened. Whenever any activity that links neurons is repeated, those neurons fire faster, stronger, sharper signals together, and the circuit gets more efficient and better at helping to perform the skill.

The converse is also true. When a person stops performing an activity for an extended period, those connections are weakened, and over time many are lost. This is an example of a more general principle of plasticity: that it is a use-it-or-lose-it phenomenon. Thousands of experiments have now demonstrated this fact. Often the neurons that were involved in the skill will be taken over and used for other mental tasks that are now being performed more regularly. Sometimes one can manipulate the use-it-or-lose-it principle to undo brain connections that are not helpful, because neurons that fire apart wire apart. Suppose a person has formed a bad habit of eating whenever he is emotionally upset, associating the pleasure of food with the dulling of emotional pain; breaking the habit will require learning to disassociate the two. He might have to actively forbid himself from going to the kitchen when he is emotionally upset, until he finds a better way to handle his emotions.

Plasticity can be a blessing when the ongoing sensory input we receive is pleasurable, for it allows us to develop a brain that is better able to perceive and to savor pleasant sensations; but that same plasticity can be a curse when the sensory system that is receiving ongoing input is the pain system. That can happen when a person slips a disc, which then presses repeatedly on a nerve root in her spine. Her pain map for the area becomes hypersensitive, and she begins to feel pain not only when the disc hits the nerve when she moves the wrong way, but even when the disc is not pressing hard. The pain signal reverberates throughout her brain, so that pain persists even after its original stimulus has stopped. (Something similar, and even more drastic, happens in phantom limb pain, when a person who has lost a limb feels it is still attached and hurting. This more complex phenomenon is discussed in The Brain That Changes Itself. )

Wall and Melzack showed how a chronic injury not only makes the cells in the pain system fire more easily but can also cause our pain maps to enlarge their “receptive field” (the area of the body’s surface that they map for), so that we begin to feel pain over a larger area of our body’s surface. This was happening to Moskowitz, whose neck pain was spreading to both sides of his neck.

Wall and Melzack also showed that as maps enlarge, pain signals in one map can “spill” into adjacent pain maps. Then we may develop referred pain, when we are hurt in one body part but feel the pain in another, some distance away. Ultimately, the brain maps for pain begin to fire so easily that the person ends up in excruciating, unremitting pain, felt over a large area of the body—all in response to the smallest stimulation of a nerve.

Thus, the more often Moskowitz felt twinges of neck pain, the more easily his brain’s neurons recognized it, and the more intense it got. The name for this well-documented neuroplastic process is wind-up pain, because the more the receptors in the pain system fire, the more sensitive they become.

Moskowitz realized that he was developing a chronic pain syndrome and was caught in a vicious cycle, a brain trap: each time he had an attack of pain, his plastic brain got more sensitive to it, making it worse, setting him up for a new, still worse attack next time. The intensity of his pain signal, the length of time it lasted, and the amount of space in the body it “occupied” all increased.

It was a case of plasticity gone wild.

 • • • 

IN 1999 MOSKOWITZ BEGAN DRAWING pictures on his computer, demonstrating how chronic pain caused an expansion of the brain’s pain maps. At the time, the specialty of pain medicine was often far more focused on how pain is processed in the spinal cord and the body’s peripheral nervous system than in the brain. As late as 2006, the major text on pain, Wall and Melzack’s Textbook of Pain, had a chapter on plasticity and the spinal cord but none on plasticity and the brain. A few years later, in his article titled “Central Influences on Pain,” Moskowitz began shifting that emphasis.

Moskowitz defined chronic pain as “learned pain.” Chronic pain not only indicates illness; it is itself an illness. The body’s alarm system is stuck in the “on” position, because the person has been unable to remedy the cause of an acute pain, and the central nervous system has become damaged. “Once chronicity sets in, the pain is much more difficult to treat.”

Moskowitz’s thinking was beginning to converge with another Melzack theory, called the neuromatrix theory of pain. Acute pain is a sensation we feel, an “input” that comes into the brain from the bottom up, from our sense receptors. But chronic pain is more complex and more a top-down process. The essence of the neuromatrix theory of pain is that chronic pain is more a perception than a raw sensation, because the brain takes many factors into account to determine the extent of danger to the tissues. Scores of studies have shown that along with assessing damage, the brain, when developing our subjective experience of pain perception, also assesses whether action can be taken to diminish the pain, and it develops expectations as to whether this damage will improve or get worse. The sum total of these assessments determines our expectation as to our future, and these expectations play a major role in the level of pain we will feel. Because the brain can so influence our perception of chronic pain, Melzack conceptualized it as more of “an output of the central nervous system.”

Thus, the pain circuit is not a one-way circuit from body to brain; it constantly recycles signals, from the body to the brain and back. The full pain response doesn’t stop once the pain signal enters the brain. It begins myriad automatic responses that evolved to avoid further damage and promote healing. We recoil; we guard our damaged limbs so they won’t be moved; we groan and cry out for help; we assess and reassess the severity of our wound, if we can; and as studies show, we ride a roller coaster of ups and downs in our distress, based on our latest assessment. If a person develops chest pain behind his breastbone that radiates down the left arm, and thinks these are symptoms of a heart attack, he will experience that pain as more intense than he will if his physician assures him that it’s caused by a muscle strain.

“The brain,” Moskowitz wrote (using the military metaphor), “mounts a counteroffensive against the incoming activity in an attempt to turn the excessive activity down.” He detailed all the pain-modulating pathways that could do so—from the highest ones that originate in the brain’s cerebral cortex (where reasoning occurs) to the “lower” input areas in the spinal cord.

A Neuroplastic Competition

Wishing to take charge of his own pain, in 2007 Moskowitz read fifteen thousand pages of neuroscience. He wanted to better understand the laws of neuroplastic change and put them into practice. He learned that not only can one strengthen circuits between brain areas by getting these areas to fire at the same time, but that one can weaken connections because “neurons that fire apart wire apart.”

Could he, by fiddling with the timing of input to his brain, start to weaken links that had formed in his pain maps?

He learned that in our use-it-or-lose-it brain there is an ongoing competition for cortical real estate, because the activities the brain performs regularly take up more and more space in the brain by “stealing” resources from other areas. He drew three pictures of the brain that summarized what he had learned. The first was a picture of the brain in acute pain, with sixteen areas showing activity. The second was of the brain in chronic pain, showing those same areas firing but expanded over a larger area of the brain, and the third picture was of the brain when it is not registering pain at all.

As he analyzed the areas that fire in chronic pain, he observed that many of those areas also process thoughts, sensations, images, memories, movements, emotions, and beliefs—when they are not processing pain. That observation explained why, when we are in pain, we can’t concentrate or think well; why we have sensory problems and often can’t tolerate certain sounds or light; why we can’t move more gracefully; and why we can’t control our emotions very well and become irritable and have emotional outbursts. The areas that regulate these activities have been hijacked to process the pain signal.

The neuroplastician Michael Merzenich showed the competitive nature of plasticity by first mapping a monkey’s brain over time. Mapping a brain means finding where in the brain different mental functions occur. For instance, sensations coming from each of the fingers in our right hand are processed in the touch area in our left hemisphere, and each finger has a separate location in the map where its touch sensations are processed. The signals from the neurons that process these sensations can be detected by microelectrodes, pins inserted into individual neurons, or right beside them, to detect when they fire. These electrical signals are passed to an amplifier, then to an oscilloscope with a screen that allows scientists to both see and hear the neuron as it fires. By inserting a microelectrode into the brain’s sensory map for the thumb, then touching the actual thumb, a scientist can see “thumb” neurons firing on the screen.

Merzenich mapped a monkey’s entire hand map. He began by touching the monkey’s first finger and seeing which brain area started to fire. Once he found its brain map and defined its borders, he went on to the next finger. He found five finger areas, side by side for each of the five digits.

Then he amputated the animal’s third finger. After a number of months, he remapped the monkey’s remaining fingers and found that the brain maps for the second finger and fourth finger had grown into the space he had originally mapped for the third. Because the map was no longer getting input from the third finger, and because the second and fourth fingers were doing more work now that the third was missing, they took over that map space. Here was a very clear demonstration that brain maps are dynamic, that there is competition for cortical real estate, and that brain resources are allocated according to the principle of use it or lose it.

Moskowitz’s inspiration was simple: what if he could use competitive plasticity in his favor? What if, when his pain started—instead of allowing those areas to be pirated and “taken over” by pain processing—he “took them back” for their original main activities, by forcing himself to perform those activities, no matter how intense the pain was?

What if, when he was in pain, he could try to override the natural tendency to retreat, lie down, rest, stop thinking, and nurse himself? Moskowitz decided the brain needed a counterstimulation. He would force those brain areas to process anything-but-pain, to weaken his chronic pain circuits.

Years as a pain medicine specialist had fixed in his mind the key brain areas he was targeting. Each of them could process pain and do other mental functions, and he listed what each did other than process pain, so he would be prepared to do those things while he was in pain. For instance, a part of the brain called the somatosensory area (soma means “body”) processes much of the body’s sensory input, including pain, vibration, and touch. What if, while he felt pain, he was to flood himself with vibration and touch sensations? Might those sensations prevent the somatosensory areas from being able to process pain?

He drafted a list of brain areas he would target (Table 1).

Table 1. Major Brain Areas Where Pain Is Processed

Somatosensory 1 and 2 (the sensory maps for our body parts):

Pain; touch, temperature sense, pressure sense, position sense, vibration sense, sensation of movement

Prefrontal Area:

Pain; executive function, creativity, planning, empathy, action, emotional balance, intuition

Anterior Cingulate:

Pain; emotional self-control, sympathetic control, conflict detection, problem solving

Posterior Parietal Lobe:

Pain; sensory, visual, auditory perception; mirror neurons (neurons that fire when we see other people move), internal location of stimuli, location of external space

Supplementary Motor Area:

Pain; planned movement, mirror neurons

Amygdala:

Pain; emotion, emotional memory, emotional response, pleasure, sight, smell, emotional extremes

Insula:

Pain; quiets the amygdala (the brain area just above); temperature, itch, empathy, emotional self-awareness, sensual touch, connects emotion with bodily sensation, mirror neurons, disgust

Posterior Cingulate:

Pain; visuospatial cognition, autobiographical memory retrieval

Hippocampus:

Helps to store pain memories

Orbital Frontal Cortex:

Pain; evaluates whether something is pleasant vs. unpleasant, empathy, understanding, emotional attunement

Moskowitz knew that when a particular brain area is processing acute pain, only about 5 percent of the neurons in that area are dedicated to processing pain. In chronic pain, the constant firing and wiring lead to an increase, so that 15 to 25 percent of the neurons in the area are now dedicated to pain processing. So about 10 to 20 percent of neurons get pirated to process chronic pain. Those were what he would have to steal back.

In April 2007 he put this theory into practice. He decided that he would first use visual activity to overpower the pain. A huge part of the brain is devoted to visual processing, and it couldn’t hurt to have it on his side in this competition. He knew of two brain areas that process visual information and pain, the posterior cingulate (which helps us to visually imagine where things are in space) and the posterior parietal lobe (which also processes visual input).

Each time he got an attack of pain, he immediately began visualizing. But what? He visualized the very brain maps he had drawn, to remind himself that the brain can really change, so he’d stay motivated. First he would visualize his picture of the brain in chronic pain—and observed how much the map in chronic pain had expanded neuroplastically. Then he would imagine the areas of firing shrinking, so that they looked like the brain when there was no pain. “I had to be relentless—even more relentless than the pain signal itself,” he said. He greeted every twinge of pain with an image of his pain map shrinking, knowing that he was forcing his posterior cingulate and posterior parietal lobes to process a visual image.

In the first three weeks, he thought he noticed a very small decrease in pain, and he doggedly continued to apply the technique, telling himself to “disconnect the network, shrink the map.” After a month he was getting the hang of it and applying the technique so conscientiously that he never let a pain spike occur without doing some visualization or other mental activity to oppose it.

It worked. By six weeks, the pain between his shoulders in his back and near his shoulder blades had completely disappeared, never to return. By four months, he was having his first totally pain-free periods throughout his neck. And within a year he was almost always pain free, his average pain 0/10. If he had a brief relapse (usually from his neck being in a weird position, after a long drive, or having the flu), he was able to get his pain down to 0 in a few minutes. His life was totally changed, after thirteen years of chronic pain. During those thirteen years, his average pain had been 5/10, but could range up as high as 8/10 even on medication, and even his best days were 3/10.

The disappearance of the pain reversed the original pattern of its expansion. After his injury, he had acute pain on the left side of his neck, exactly where the injury had occurred. As time passed and the pain became chronic, it had neuroplastically extended to the right side of his neck and down to his midback. Now, with the visualizations, he noticed that the borders of the pain on the right were the first to get smaller. Then the pain on the left side began to retract and went away.

After six weeks of results, he started to share his discovery with his patients.

His First Neuroplastic Patient

Jan Sandin was in her forties, a registered nurse on a cardiac ward at Sequoia Hospital in Redwood City, California. One day when she was working with a 280-pound woman patient, the patient accidentally gashed her own leg and became hysterical. Terrified that she would fall, she reached out her arms and grabbed Jan’s neck, hanging on so tightly Jan couldn’t breathe: “It felt like a death grip.” The woman was screaming, too panicked to put her weight on her injured leg. Jan couldn’t dislodge her, so she asked an assistant to maneuver the patient toward the bed and get ready to do a “one, two, three” lift. Jan heaved, but her assistant, in shock from the patient’s screaming, didn’t put her arms out to help. Suddenly Jan was supporting the full weight of nearly three hundred pounds. “I heard the sound of a rubber band snapping,” she recalled, “and felt something inside me break.” All five of her lumbar (low-back) discs were damaged, and the bottom one slipped and pressed against a nerve root. She developed sciatica pain down both legs and could not walk. Whenever she moved, her spine made a crunching sound.

In intense pain, Jan was taken to the emergency room. She was diagnosed as having damage to all the discs in her five lumbar vertebrae. After subsequent tests she was told she had so much degeneration of the spine, she would probably need to have those five vertebrae fused with surgery. Over the next few years she was given all the usual treatments for pain, including physiotherapy and heavy-duty opioid medications. Nothing helped, and the pain became chronic. Surgeons told her there was too much damage in her lower back to operate. After several brave attempts to return to work, she was declared disabled. She felt her life was over. “I was depressed and suicidal. And it didn’t matter what drugs the doctors gave me—the pain never went away. I couldn’t even watch TV or read because, on top of the pain, the drugs I took put me in a gray zone. There was no reason to live.” She spent the next decade at home, never going out except to doctors’ visits.

By the time she got to Moskowitz, she had been disabled with chronic pain for a decade. The slightest movement would trigger unbearable exacerbations. She spent entire days in her Jacuzzi, on huge doses of heavy-duty painkillers like morphine, which would lower her pain to a 5/10. Often she spent twelve hours a day in a Japanese massage chair but got little relief. Bent over with a cane, she could hardly get herself into Moskowitz’s office.

 • • • 

IT’S JULY 2009. THE WOMAN I see before me, Jan, is sixty-two years old, beaming, perky, relaxed, and off all medication. Moskowitz had been working conventionally with her for five years, using heavy-duty painkillers, when, in June 2007, he introduced her to the idea of training herself, using his neuroplastic technique. To motivate her for the neuroplastic challenge ahead—and she would have to counter the pain mentally every moment over the next weeks—he decided she would first have to understand plasticity and take inspiration from the successes of others who had been deemed incurable.

“One day, Moskowitz said, ‘Okay, I have thought of something new,’ and he gave me your book,” Jan told me. “And I went right through it, so I could understand how the plasticity of the brain works. The book opened up a way for me to think I might be able to do something. I realized I was stuck in a fixed logic. Reading all the examples of different connections forming in the brain made me think something else might be possible.”

Moskowitz showed her his three pictures of the brain and told her that she had to be more relentless than the pain in focusing on them. He asked her first to look at the pictures, then put them down and visualize them, while thinking about transforming her brain into the no-pain version. He urged her to hold on to the thought that if her brain looked like the no-pain picture, she couldn’t have any pain.

“I started to take what you were saying in the book,” she told me, “and what he was saying and put them into practice. He told me to look at the brain pictures seven times a day. But I sat in the massage chair and I looked at them all day long, because I had nothing else to do. I would visualize the pain centers firing, and then I thought about where my pain was coming from in my back. Then I would visualize how it went into the spine and then into my brain—but with no pain centers firing. In those first two weeks, I had moments when there was no pain. . . . It wasn’t profound, because I felt, Oh, it’s not going to last. Then I thought, Oh, it’s back again—don’t get your hopes up.

“By the third week I was starting to have a couple of minutes a day without chronic pain. It just stopped me in my tracks. And then it would come back. By the end of the third week, the time without pain seemed to increase. But it happened for such a short period of time that, honestly, I never really thought it would go away.

“By the fourth week, the pain-free periods were up to fifteen minutes to half an hour. I thought, This is going to go away.”

And it did.

Next, she started going off all her medications, terrified the pain would return, but it didn’t. “I wondered, Is it a placebo? But the pain still hasn’t come back. It has never come back.”

When I first saw Jan, she had been free of all medication and pain for a year and a half, and life was returning to normal. “It is like I was asleep for a decade. Now I want to stay up twenty-four hours a day and read, and catch up on all that I have missed. I want to be awake all the time.”

The MIRROR Acronym

Moskowitz began formulating acronyms, based on neuroplastic principles, to remind patients in chronic pain how to organize their minds (minds that were slightly foggy and disorganized by the pain) as they sought to undermine that pain. One was MIRROR, for Motivation, Intention, Relentlessness, Reliability, Opportunity, and Restoration.

Motivation is the first MIRROR principle. Most chronic pain patients go to their physicians with a passive attitude toward their pain. They have been trained that their role is to take a pill or submit to an injection. Generally they are so sapped by their pain, they assume this passive role easily, living from visit to visit, hoping the physician will find the magical medication to make life more bearable.

Now, in the Moskowitz approach, the patient must become active, must read about how pain develops, must actively visualize (or some equivalent) and take charge of her treatment. Motivation is especially difficult in the early weeks of Moskowitz’s technique, when the patient can’t be sure it is having any effect and finds that after the first small success, the pain returns. Patients tend to take these setbacks as a reason to feel helpless and hopeless and stop. The trick is to use each attack of pain as a motivator, an opportunity to apply the technique, which will ultimately work.

Intention is a subtle concept. The immediate intention is not to get rid of pain—it is to focus the mind, in order to change the brain. Thinking that the immediate reward will be pain reduction will make it hard to get there, because that reward comes slowly. In the early stages what counts is the mental effort to change. These mental efforts help build new circuits and weaken the pain networks. The initial reward, after an episode, is being able to say, “I got a pain attack and used it as an opportunity to exercise mental effort and develop new connections in my brain, which will help in the long run,” rather than “I got a pain attack, I tried to get rid of it, but am still in pain.” Moskowitz writes, in his patient handout: “If focus is merely on immediate pain control, positive results will be fleeting and frustrating. Immediate pain control is definitely part of the program, but the real reward is to disconnect excessively wired pain networks and to restore more balanced brain function in these pain processing regions of the brain.”

Relentlessness is the simplest concept of all. Pain intruding into consciousness is the signal to push back. What is challenging about relentlessness is that when the pain is just beginning to act up, the patient may think perhaps it will be enough to tolerate the pain or distract himself, hoping it will pass, or that it might be easier to pop a pill and nip it in the bud. But putting up with some pain, while trying to distract oneself with work, is not an intense enough focus to break the stranglehold of chronic pain. Research on neuroplasticity shows that intense focus is generally required to alter the circuits and make new connections. So casual distraction must be resisted, because it allows the pain to run unopposed. Thus, even if the pain seems mild, letting it go unopposed may mean it gets stronger next time. Relentlessness means: every time pain is detected, push back, with full focus, and with the specific intention of rewiring the brain back to what it was before the chronic pain began. No exceptions. No negotiations with pain.

Reliability is a reminder that the brain is not the enemy, and that the patient can rely upon it to restore and maintain normal function if it has clear and unrelenting directions to do so. For psychological reasons, when in pain, the sufferer feels penalized and tormented by it. But except in the case of certain neurotic psychological conflicts, which generally have to do with unconscious guilt, the brain and nervous system are not “trying to punish” the person in pain. The brain, like all living systems, constantly seeks a stable state. The problem is that at times, it stabilizes in a state of chronic pain. But if the brain is given a way to get back to its previous, pain-free state, before chronic pain set in, it will not generally oppose the change. After all, the pain system evolved to protect. It is an alarm system, not an enemy. “When unconscious systems are not enough to solve a brain/body problem,” Moskowitz writes, “we have to bring in conscious control in the form of new learning until the brain and body can carry on without that conscious input. It is a fact that brain and body reliably turn conscious effort into unconscious action that allows us to move from learning to mastery, returning the disease of persistent pain to the fleeting symptom of acute pain.”

Opportunity means turning each pain episode into a chance to repair the faulty alarm system. While it’s hard to welcome an attack of pain, using it to rally oneself can feel constructive, knowing one is taking charge and is using the pain spike to heal. That attitude by itself can alter the mindset and brain chemistry. “Pain that persists,” Moskowitz says, “is terrifying because it sets off the amygdala, before the parts of the brain that modify our emotional responses can be turned on.

“The result is that we reexperience the trauma that caused the pain and this trauma is continuously reinforced by it. The terror demoralizes us, and as pain-processing areas expand in the brain, we lose our full ability to problem-solve, regulate emotions, resolve conflicts, relate to others, distinguish other sensations from pain, effectively plan, and even remember how to apply our past experience to control pain. Every time the pain worsens, it feels like it is here to stay, and we must avoid it at all costs. The amygdala is not a place of moderation. It is a place of extreme emotions, fight-and-flight and post-traumatic stress disorder. Persistent pain demoralizes most people who have it. If, on the other hand, we turn the pain episodes into an opportunity to practice using our brains and bodies differently to gain control of the pain, then pain spiking shifts from an act of terror to a chance to soothe. . . . Essentially we are turning the disease of pain back to a symptom, a signal to rally us to do something to stop it.”

Restoration means that the goal isn’t to mask pain or take the edge off it, as medication or anesthetics would, but to restore normal brain function.

Once Moskowitz was able to put these six tools in his patients’ hands, and motivate them toward the ambitious goal of completely normalizing their brain function, their attitude changed. Now when they had modest improvements, they felt not just temporary feelings of “relief” but a progressive increase in hope, which they then used to energize themselves, to continue applying the technique. A vicious cycle was turned into a virtuous one.

How Visualization Decreases Brain Pain

So far we have explained the cure that Moskowitz achieved as caused by competitive plasticity. For instance, a part of the brain, the posterior parietal lobe, normally processes both pain and visual perception. By visualizing constantly, Jan prevented that lobe from processing pain. Repeated visualization is a very direct way of using thought to stimulate neurons—neurostimulation. On brain scans, we can see signs of the blood rushing to the visual neurons of the brain that are being activated. What we have left out is that she and Moskowitz did a very specific form of visualization: they imagined that the area of the brain devoted to processing pain was shrinking.

I was intrigued by the use of visual imagery, which is not entirely new—hypnotists often use it to bring about pain relief, by asking patients to imagine that the area in pain is shrinking, or fading, or farther away. Put in neuroscientific terms, the hypnotists are actually getting their clients to experiment not with their physical bodies but with the subjective image they have of their bodies in their minds, what clinicians call the “body image.” The body image was first described in the 1930s by a psychiatrist and student of Freud, Paul Schilder, who pointed out that it is not identical to the physical body.

The body image is formed in the mind and is represented in the brain, then is unconsciously projected onto the body. Neuroscientists sometimes call it the “virtual body” to emphasize that it has an existence in the brain and mind that is independent of the physical body. This body image is built up with input from multiple brain maps including vision but also touch, pain, and proprioception (where our limbs and bodies are in space)—indeed, from any map that has information, sensory or even emotional, about our bodies. It is thus the sum total of all the different inputs to the brain from the different senses, but also includes the person’s own emotionally laden ideas about his or her body.

The body image can be quite in sync with the actual body, meaning it can be a fairly accurate representation of it. In those situations, we may even forget that our image of the body is a mental phenomenon that is different from the actual body. But when the body image doesn’t match the body, the difference is easy to detect. Many of us have experienced this mismatch without realizing it when the dentist gives a local anesthetic: suddenly the jaw and cheeks feel subjectively much larger than they really are. The mismatch is pronounced when someone with anorexia nervosa looks in the mirror and insists she is fat, when she is actually skin and bones, on the brink of starvation. She has the body image of a fat person, though her physical body is emaciated.

Around the time when Moskowitz was starting to use visualization, having chronic pain patients imagine that areas of their brain were shrinking, scientists in Australia were getting similar results by having patients in the lab “shrink” their body image to rewire their brains. In 2008 G. Lorimer Moseley, an Australian neuroscientist and one of the most creative pain researchers alive, with his colleagues, Timothy Parsons and Charles Spence, conducted an ingenious study of people with chronic hand pain and swelling. He asked them to observe their hands in different conditions. First, in the control situation, they looked at their hands while doing ten hand movements. Then they looked through binoculars without magnification (another control situation, just in case using binoculars had an influence on results) and moved their hands. Third, they watched their hands performing the movements through the binoculars at two times magnification. Finally, they looked through the wrong end of the binoculars, so that their hands looked smaller.

Intriguingly, the researchers found that the pain increased when the image of the hands was magnified, and decreased when it was miniaturized.

A skeptic might question the reliability of patients rating themselves. But these patients did have actual swelling in their hands, and when the researchers measured the circumference of the patients’ fingers during the experiment, they observed that the swelling increased when the patients were viewing their hands under magnification.

What this remarkable study shows, once again, is that the experience of pain is not wholly driven by sensory input from pain receptors but is influenced by the body image. When the brain, because of distorted visual input coming from the binoculars, determines that the pain is coming from a smaller area, it concludes, “Less damage.” (Moseley proposes that the reason the pain is lessened is that the brain has “visuotactile cells” that simultaneously process both visual and tactile senses, and that magnifying the view of the area being touched increases input into these cells.)

Another breakthrough experiment in pain management involving visualization occurred by accident when academics from the University of Nottingham, England, went to a fair to demonstrate the use of an optical illusion called Mirage. The university’s psychology department had developed Mirage in order to distort the body image, as part of a study of how the body map works.

At the fair, the researchers invited children to put their hands inside a box with a camera in it. Mirage then displayed distorted images of their hands on a large screen, where the children could see the distortions—a computerized version of a fun-house mirror.

Encouraged by the researchers, the children tugged gently on their fingers. When they did, on the screen it appeared as though their fingers were being stretched to three or four times their normal size. When they compressed their fingers, they would then appear to shrink on the screen. In other words, the image on the screen was altering their visual body image (leaving their physical body unchanged).

A grandmother of one of the children thought it looked fun and insisted on having a go. But she told the researchers they had better be gentle when they demonstrated the tugging on her hands, because she had arthritis in her fingers.

Dr. Catherine Preston explains, “We were giving her a practical demonstration of an illusory finger stretching when she announced, ‘My finger doesn’t hurt anymore’ and asked whether she could take the machine home with her. We were just stunned—I don’t know who was more surprised, her or us.”

Preston followed up with a study of twenty volunteers with osteoarthritis, some of whom had constant pain in their hands, feet, and lower back. That study showed that using the device halved the level of pain in 85 percent of the volunteers. A number of people got the greatest pain reduction when the fingers were shrunk; others got most relief when their fingers were stretched; and some got pain reduction as long as the image of the finger was changed in any way. Many were able to use their fingers more easily while using the device.

It is not clear why “stretching” the imaged fingers would reduce pain; perhaps a stretched finger has different dimensions, and appears slimmer. What does seem clear is that real-time modification of the visual body image can lower the pain experience. It reminds us that the formation of the sense of the body in pain is dynamic—it is being remade all the time, depending on visual input. It shows that altering the visual imagery of the body can modify pain circuits. This is an important clue as to why Jan Sandin was able to look at imagery of her brain and imagine the pain signal shrinking: she said she strongly identified with those pictures of the brain in chronic pain and then imagined a transition to the picture of the brain out of pain—the signals shrinking away.

Jan hadn’t simply been looking at brain pictures; she had also linked them to the pain she felt in her back. Ultimately, she formed a new body image map, which included the brain pictures, and was able to do so because our “master” brain map of our body image is a highly integrated combination of many different maps. It includes the primary biological ones, based on sensory input from our bodies, but also artificial ones, such as our reflection in a mirror, or a favorite photograph of ourselves, or even medical imagery, as when we get an echocardiogram and see our heart contracting, or we are shown an X-ray that displays our insides. Whatever can be defined as representing us can ultimately make its way into our master body image. (The ways the body image can be extended to include artificial images is discussed in detail in Chapter 7 of The Brain That Changes Itself. )

Is It a Placebo?

“Is it the placebo effect?” I ask Moskowitz, echoing Jan’s question after she got better unexpectedly, fearing it wouldn’t last. It’s not that I believe it is, but I know that this is the question skeptics will ask him.

The term placebo derives from the Latin “I shall please.” The placebo effect occurs when a patient with symptoms is given a dummy pill, such as a sugar pill, or injections with no active ingredients, or pseudo-surgery* (when a physician opens a patient’s body up but doesn’t operate, just pretends to, then closes it). The patient is told she is getting effective treatment, and surprisingly, she often gets immediate relief and sometimes as much improvement as might occur with the “real” or “active” treatment. Placebos can be used to treat pain, depression, arthritis, irritable bowel, ulcers, and a wide range of illnesses. But it doesn’t work for all illnesses—cancer, or viruses, or schizophrenia, for instance. Most physicians assume that whenever a patient gets better inexplicably, some powerful psychological factor is involved.

So I ask Moskowitz, “Is it the placebo effect?”

“I hope so,” he laughs.

He laughs because he knows that if it is placebo, it wouldn’t be nearly the problem most skeptics believe it to be. The latest brain scan research shows that when the placebo effect occurs in pain patients, or in patients with depression, the changes in the brain are almost identical to those that occur when they get better with medication. Clinicians and scientists who study mind-body medicine argue that if we could develop a way of systematically activating the brain circuitry that underlies the placebo effect, it would represent a huge medical breakthrough.

For pain, the placebo effect generally runs at 30 percent or higher, meaning that if a pain patient is given a sugar pill instead of real medication, or injections that consist only of salt water (saline) instead of anesthetic, at least 30 percent will report significant pain relief. Before the discovery of neuroplasticity, researchers tended to assume that patients who experienced the placebo effect were mostly psychologically unstable, flighty, immature, poor, or female (all of which has since been shown to be untrue). Brain scan studies demonstrate that when the placebo effect occurs, brain structure changes. Placebo cures are not “less real” than cures by medication. They are examples of neuroplasticity in action: mind changing brain structure.

One of the groups pioneering these studies was led by a researcher who had serious doubts. Tor Wager, a Columbia University neuroscientist, was raised as a Christian Scientist and as a boy was taught that all illnesses were products of the mind, requiring prayer not medication. When he developed a severe skin rash that would not disappear through prayer, his mother took him to a doctor, who treated him with medication, successfully. Wager became skeptical of the idea that the mind could heal, and of the placebo effect, which he began to study, expecting to find it was ineffective. He gave painful shocks to volunteers, then gave them a placebo cream that he told them would diminish the pain. To his surprise, his studies showed the placebo cream worked. He then used fMRI scans to study what was happening in their brains. When the subjects were given shocks and felt pain, some of the same brain areas that Moskowitz had seen activated by pain lit up. When Wager gave them the placebo, he found reduced activation in the same areas that Moskowitz told his patients could be modified through visualization.

Using PET scans of the brain, Wager has also shown that placebo treatment turns off pain by getting key brain areas to increase the production of endogenous opioids—the opiumlike substances that the brain produces to erase pain. He showed that the placebo response strengthened the brain’s wiring in the opioid-producing areas of the brain’s pain system. In other words, the mind can release an internal supply of the natural balm that the brain normally produces. And unlike the opioids in medications like morphine, these opioids are nonaddictive.

Why It Isn’t Just Placebo

“I’m totally open to the idea that this is placebo and suggestion,” says Moskowitz, “but I have done this a long time, thirty years, since 1981, and I have never seen placebo or suggestion stick this long. I have never seen the changes for pain based on hypnosis or suggestion last longer than a week or so.”

Moskowitz’s assertion that placebos generally don’t last reflects the consensus based on numerous placebo studies. If a response is very rapid, it is more likely to be a placebo response, but the placebo responders were more likely to suffer a relapse, though some studies show the placebo effect can last for weeks.

However, the exact opposite pattern is seen in Moskowitz’s patients using the MIRROR approach and competitive plasticity. His patients often have no response for weeks, then gradually have less and less pain; once they have rewired their brains, they generally have to do the intervention less and less. I have seen the same pattern in people who used neuroplastic techniques to rewire their brains to cure learning disorders and to improve after strokes and traumatic brain injury: the symptoms didn’t disappear quickly. Moskowitz’s patients’ pattern of change is also consistent with what we see when the brain learns a new skill, like playing a musical instrument or learning a language. The time frame is typical of what I have seen in significant neuroplastic change: the change occurred over weeks (often six to eight weeks) and required daily mental practice. It’s hard work.

A skeptic, who has difficulty imagining that visualizing a specific brain pain area can diminish pain, might argue that all Moskowitz is doing is finding a way to relax his patients and lower their general level of arousal, so that their pain bothers them less. But one thing that has been learned from studying the placebo effect is that the mind has the ability to target pain with laserlike precision.

The mind-brain-body healing process is not merely a general, nonspecific process that resets the entire nervous system, the way relaxation does. Mysteriously—because we don’t yet know the mechanism—it targets only what the patient believes is the focus. With elegant simplicity, the researcher Guy Montgomery placed weights heavy enough to cause pain on both index fingers of his subjects. He then applied a placebo cream to only one index finger. He found that pain was relieved only in the finger that got the placebo cream. These people were not being relaxed or put in a trance: they were in normal states of conscious arousal, and still their minds could pinpoint the exact spot of acute pain and eliminate it.

What Moskowitz has added to our understanding of this ability of the mind to eliminate a particular pain is that constant mental practice is necessary to strengthen this ability and change the firing of the brain in a way that is sustained.

Unlike medication or placebo, the neuroplastic technique allows patients to reduce its use over time, once their networks have rewired. The effects last. Moskowitz has patients who have kept their gains for five years. Many of his relatively pain-free patients still have damage in their bodies, which can, on occasion, trigger acute pain. He thinks that once they have learned and practiced the technique over hundreds of hours, their unconscious mind takes over the task of blocking pain by using competitive plasticity. When it doesn’t, they can still use the spike of pain as the signal to consciously use competitive plasticity to do more rewiring.

 • • • 

ONE OF MOSKOWITZ’S MOST IMPORTANT insights is that the new opioid narcotics, so popular for pain treatment, have actually made pain problems worse, because neither the drug companies nor most physicians take into account the role of neuroplasticity in pain. Opioid narcotics, the most potent pain medications we have, generally don’t work well over long periods of time. Often within days or weeks, patients become “tolerant” to such a drug: the size of the initial dose loses its effect, so they need ever more medication, or they experience “breakthrough pain” while on the drug. But as the dose is increased, so too is the danger of addiction and overdose. To better block pain, drug companies invented “long-acting” opioids, such as OxyContin, a long-acting morphine. People with chronic pain would often be placed on OxyContin-like drugs for life.

As we’ve seen, the brain makes its own opioidlike substances to block pain, and the manufactured drugs supplement them by attaching to the brain’s own opioid receptors. As long as scientists believed that the brain couldn’t change, they never anticipated that bombarding the opioid receptors with opioid medications could do harm. However, says Moskowitz, “once we saturate all our God-given receptors, the brain produces new ones.” It adapts to being inundated by long-term opioids by becoming less sensitive to them—and thus patients become more sensitive to pain, and more dependent on their drugs, which can make their chronic pain worse. The problem exists, says Moskowitz, with all the pain medicines.

Once he made his discoveries, he slowly began to wean many patients from their long-term opioids. A key to success was to lower the dose very slowly, thereby giving the neuroplastic brain the time it needed to adapt to being without drugs, so the patient wouldn’t experience any “breakthrough pain.” Tapering slowly, down to 50 to 80 percent of the original dose, could break the cycle of opioid-induced pain sensitivity.

 • • • 

“I DON’T BELIEVE IN PAIN management anymore,” says Moskowitz. “I believe in trying to cure persistent pain.”

He has helped patients with a whole range of chronic pain syndromes to diminish their pain, including those with chronic low-back pain from nerve injury and inflammatory damage, diabetic neuropathy, some cancer pain, abdominal pain, neck degeneration pain, amputation, trauma to the brain and spinal cord, pelvic floor pain, inflammatory bowel, irritable bowel, bladder pain, arthritis, lupus, trigeminal neuralgia, multiple sclerosis pain, post-infectious pain, nerve injuries, neuropathic pain, some central pain, phantom limb pain, degenerative disc disease in all regions of the spine, pain from failed back surgery, and pain from nerve root injury, among others. I met many of his patients who had either come off their medications or radically reduced them, so that they have far fewer side effects. Patients have had successes in all these pain syndromes, but only when they were able to do the relentless mental work required.

This burden of work is one of the limits of his approach. Not everyone is like Jan, willing to apply themselves relentlessly, especially in the early weeks, when nothing appears to be changing, even if they have a physician as inspiring as Michael Moskowitz. He’s observed that when patients have not benefited, they have seemed unable, for whatever reason, to mobilize themselves mentally for the challenge. Many, perhaps most, need positive reinforcement.

Jan, Moskowitz, and others were restored by understanding how to use competitive plasticity. Pleasure returned. Many clinicians would, at that point, have focused the rest of their career on teaching visualization, because so many patients responded to it. But not all had responded, and that left Moskowitz dissatisfied. Perhaps some needed approaches other than visualization to compete with pain. Moskowitz wondered: in addition to helping his patients to slowly unwire their brain’s pain circuitry, could he make use of the body’s own pleasure chemistry to alleviate pain more rapidly? And what if the idea of truly restoring patients meant not only achieving the absence of pain but nothing less than bringing them back to a fuller life?

In studying these questions, he would be helped by Marla Golden, a physician who specializes in chronic pain, whom he met in 2008. Golden, an emergency physician, also trained in osteopathy, a hands-on practice. She has profoundly deepened Moskowitz’s understanding of how to use touch, sound, and vibration, each in a unique way, to flood the brain and to competitively counter pain. (In Chapter 8 we shall see how sound, vibration, and touch can heal many kinds of serious brain problems.) She has achieved remarkable results by using her hands, approaching pain through the body.

“I had always thought the body was a bag for the brain,” Moskowitz said to Golden when they met, on the assumption that what a patient feels in his body is the product of brain activity. But Golden was able to show Moskowitz that the body is as much an avenue into the brain as is the mind. “She’s the yin to my yang,” he says, and he has totally internalized her approach. Now, they collaborate and have pioneered a true brain-body approach to chronic pain, in which patients receive simultaneous neuroplastic input from the mind and body to influence the brain. Golden’s hands are so sensitive, Moskowitz says, she sometimes seems to “see” with them, finding problem areas and rapid ways to ease chronic pain. I have seen Moskowitz and Golden work together, in demonstrations, on the same patient at once. Moskowitz talks to the patient, helping her to use her mind to alter brain circuits neuroplastically, while Golden works on the patient’s body, stimulating touch and vibration sense at the same time. I have followed a number of their patients and seen remarkable progress.

As for Jan Sandin, who was cured in 2009, I returned to visit her in 2011. Her chronic pain syndrome had not returned, and she actually looked younger than she had in 2009. Today, in 2014, she continues to be pain free, knowing that her relentless application of her mind in those days—when she was confined to a chair, immobilized, depressed and suicidal from her pain—was the best investment of mental energy she ever made.

Chapter 2

A Man Walks Off His Parkinsonian Symptoms

How Exercise Helps Fend Off Degenerative Disorders and Can Defer Dementia

MY WALKING COMPANION, John Pepper, was diagnosed with Parkinson’s disease, a movement disorder, over two decades ago. He first started getting symptoms nearly fifty years ago. But unless you are a perceptive and well-trained observer, you would never know it. Pepper moves too quickly for a Parkinson’s patient. He doesn’t appear to have the classic symptoms: no shuffling gait; no visible tremor when he pauses or when he moves; he does not appear especially rigid, and seems able to initiate new movements fairly quickly; he has a good sense of balance. He even swings his arms as he walks. He shows none of the slowed movements that are the hallmark of Parkinson’s. He hasn’t been on anti-Parkinson’s medication for nine years, since he was sixty-eight years old, yet appears to walk perfectly normally.

In fact, when he gets going at his normal walking speed, I can’t keep up with him. He’s now going on seventy-seven and has had this illness, which is defined as an incurable, chronic, progressive neurodegenerative disorder, since his thirties. But instead of degenerating, John Pepper has been able to reverse the major symptoms, the ones that Parkinson’s patients dread most, those that lead to immobility. He’s done so with an exercise program he devised and with a special kind of concentration.

The beach we are on is called Boulders because of the huge, round rocks that ring it, lined up like adjacent marbles. It is just off the southernmost tip of Africa, where the Indian and Atlantic Oceans meet, and we have come to observe an African penguin colony. Slightly off the beaten path, we are in search of jackass penguins, so known because of their braying mating calls. We see our first penguin as it rockets out of the Indian Ocean with optimistic grace. It’s called porpoising. But when the penguin comes ashore, he has an ungainly waddle.

We have been told that in the next little stretch of sand, which is surrounded by the huge ten-foot-tall boulders, we will find a group of penguins and their babies. But I don’t see how we will reach them through the wall of rock because the cracks between the boulders are so narrow and low. Still, Pepper urges me to go through one of the gaps. I manage to contort myself, crouching on my hands and knees, in a claustrophobic passage only a couple of feet high, crawling and twisting my spine under the low ceiling over the water-lapped sand, and barely get through. Then I look back. He follows.

Most helpful customer reviews

160 of 162 people found the following review helpful.
A Beacon of Hope
By Steve
My review of "The Brain's Way of Healing" is that of someone who experienced one of the therapies he describes, the Tomatis Method, many years before Norman Doidge's book was published. For me, this is a practical subject, and I hope to shed some light both on this book and to address the natural skepticism that one might has who has not experienced or known someone who has benefited from the type of therapies Dr. Doidge describes.

My life is an example of neuroplasticity. I was 40 when I found out about the Tomatis Method, described in Chapter 8 of Dr. Doidge's book. I had never graduated college. I was born with a cleft palate, had speech therapy, and was developmentally slow. I was a traumatized child based on my childhood experiences. In my early 20s, I had cancer and was treated with chemotherapy and radiation at the National Institutes of Health in Bethesda, Maryland. In my mid-30s, I married a wonderful woman from the Philippines whom I met in the States. She was a doctor, and she did not care that I was less accomplished career-wise. It was her sudden death via car accident that plunged me into a phase that I could not pull out of. I was like an old fashioned record player where the needle got stuck in a groove. I traveled to the Listening Centre in Toronto, Canada in 2003. This is the same centre that Dr. Doidge talks about in his book. After doing Tomatis, the needle lifted, I wanted to live again, and I returned to college and finished a degree program within three years after completing my initial treatment. It's important that I share that none of this happened overnight, and mine was not a one-time, cure all treatment. I have received Tomatis sound boosts over the years. The point remains, I went from a phase where I was not functioning to one where I was renewed and not only got back on my feet, but accomplished a task - finishing a 4-year university program - that I had been unable to do at an earlier age.

I'd recommend Dr. Doidge's book to anyone. It's well researched and well written, and I feel for those in pain who might think his tone is too positive and optimistic. In the beginning, we have to allow a crack of optimism to break through. We are fortunate to live in an age where alternative therapies are already established and neuroplasticity is acknowledged. Mine is among the many stories of people getting help where they previously felt helpless. We know what we know, and what's difficult to acknowlege is our ignorance. I'd hope that readers of Dr. Doidge's book consider if any of the therapies he describes so well might help themselves or others. Norman Doidge's book is a welcome sign of the times, a beacon of light and hope that gives these alternative therapies the respect and consideration that they deserve.

176 of 182 people found the following review helpful.
A new paradigm for treating chronic illness, pain and unexplained symptoms of all kinds
By Veronique Mead, MD, MA
In his new book, Norman Doidge describes the role of brain plasticity in healing. This paradigm is helping us recognize how improvement from symptoms of all kinds is not only possible, but explainable, as well as reproducible.

Doidge artfully draws us in with people's stories, including the experiences of Dr. Michael Moskowitz, a chronic pain specialist who figured out a way to cure his own increasingly debilitating chronic pain after 13 years (chapter 1). He has also successfully taught the technique to some of his patients. In chapter 2, Doidge walks with John Pepper, a World War II survivor with Parkinson's disease who devised a program that enabled him to recover lost mobility and other functions. Pepper uses his approach not only to keep many of his symptoms at bay decades after diagnosis, he has also taught it to others with Parkinson's, who have also improved. More amazing stories and treatment approaches follow in each chapter and the case studies highlight this new paradigm. The research starts to explain the ever-elusive, until now, "why."

In easy-to-read connecting language Doidge gives us a framework for understanding what is happening during these transformations. He, and the studies he cites throughout, take us beyond our current understanding of the brain.

The principles of brain plasticity presented by Doidge can be summarized as follows (chapter 3):

Events such as strokes, infections, head injuries, radiation, toxins and degenerative processes cause brain injury and affect our neurons. While some neurons die following such events, the new science is showing us that some neurons start to signal in irregular ways following injury, which can make the brain "noisy" and confused. Other neurons become dormant (referred to as "non-use"). Improvement is based on the extent to which these neurons can heal, rewire, and recover from changes in function.

Doidge presents 4 stages of neuroplastic healing, which gives us new ways of understanding how recovery occurs. Neurostimulation (1) is commonly needed and can occur through attention to internal processes (such as mindful attention to sensations and movement, and intentional focusing of the mind on specific tasks) as well as through external input (such as from sound, light, and vibration). The energy provided by neurostimulation enables the brain to repair communication pathways and regain its innate capacity to regulate or "modulate" itself. The modulated brain (2) regains its ability to cycle, alternating from periods of activity to periods of rest and repair. Modulation allows the brain to relax, rest and heal (3). A rested brain is able to learn and rewire (4). Learning new skills allows a person to restore old functions or develop new ones and is a process referred to as neurodifferentiation.

The process of healing, and the extent to which recovery is possible, differs for everyone. Each person, as well as the events leading to symptoms, is unique. Not everyone needs to address all 4 stages of neuroplastic healing for improvement or recovery to occur. Some people experience significant or even full recovery after strokes and brain injuries. Others, such as people described who have Parkinson's and Multiple Sclerosis, can use tools to regain function and manage their diseases even though they do not achieve a cure or reversal of the underlying disease process. Some people presented have recovered fully from autoimmune-induced blindness, dyslexia, sensory integration problems, and serious debilitating developmental delays (each detailed through case studies in later book chapters). With some symptoms and chronic diseases, people need to keep using their tools to maintain their gains but can also recover again after periods of discontinuation. With other symptoms, such as Dr. Moskowitz's work with chronic pain, the techniques can be discontinued once symptoms resolve.

The amount of time and effort involved in using these techniques varies. Recovery from strokes, when new neuronal pathways need to be developed, can take months or years. At the other extreme, recovery from chronic symptoms of traumatic brain injury (TBI) began for two women within hours of initial treatment. In this setting, neurostimulation energized neurons to better modulate, allowing them to begin to communicate more effectively almost immediately. In these two cases, functions that had been interrupted rather than destroyed were restored.

We are at the frontier of a paradigm shift. The seemingly miraculous changes described here are beginning to reveal their secrets and Doidge does a masterful job of giving us the tools to begin to explore these new dimensions to whatever extent we may want. (Doidge's website has a FAQ with links to resources).

370 of 420 people found the following review helpful.
Brain plasticity, a cure for all that ails you? A skeptic at the door.
By Dr. Chuck Chakrapani
The human brain can rewire itself. This phenomenon, known for almost a hundred years beginning with the work of Karl Lashley, is known as "plasticity" and was popularized by Norman Doidge's earlier book, "The Brain that Changes Itself". That book was based on contributions from several mainstream neuroscientists working in the field of brain plasticity.

In his new book, "The Brain's Way of Healing", he goes further. And much farther - to a realm that is difficult to distinguish from the realm of alternative medicine and New Age healing. The healing claims here include how an astonishing variety of ailments - Parkinson's disease, Alzheimer's disease, multiple sclerosis, cerebral palsy, epilepsy, anxiety, concussion, autism, dyslexia, ADHD, migraine, arthritis, chronic pain, dementia, to name a few, I kid you not - can be cured by the application of "energy" such as light, sound and electrical stimulation. And they are all free of side effects.

The fact that the human body can cure itself even when medical science has given up is not new. As far back as the 1930's, Dr. Alexis Carrel, who won the Nobel Prize for pioneering vascular suturing techniques, documented in his book "Man the Unknown", how a group of patients without any hope prayed and healed themselves. Then there is the mystery of the placebo effect, the inert pill with no medicinal value that cures various ailments. So we know that the human body heals itself, even though we have not fully understood the mechanism through which it accomplishes this. Much of the explanation for the placebo effect does not go beyond naming the phenomenon in various ways.

This book ventures an explanation and claims that the techniques described in the book, used by isolated practitioners around the world from California to Canada to Australia, go beyond the placebo effect. Here is the physiological basis for the author's claim: You can use "energy" to stimulate your brain. Neuro-stimulation can reset your brain by powering up your cortex, empowering you to switch off your fight-or-flight reaction and switch on your social engagement system. This explanation is totally indistinguishable from the claims made by New Age healers. This is no scientific explanation. This is a scientific-sounding explanation of what the author believes has happened. It is hard to accept this kind of description as "scientific".

Do these therapies work? Dr. Doidge quotes practitioners and patients and has seen before and after photos. They all sound convincing. But the problem with this kind of evidence is that we know mostly of patients on whom the therapies worked. We don't know when, on how many and under what conditions the therapies didn't work. Doidge doesn't seem to document any contrary evidence or instances where the therapies fail to work. They all seem to work just fine, thank you.

On the other hand, I have no reason to believe that therapies like the ones described in the book do not work either. However, if the evidence has been so compelling and overwhelming, these therapies would be practiced more widely. In the absence of replicated published evidence, my view is a generous one: it is possible these therapies work.

I am not against what Doidge's proposed therapies. I would try them myself instead of taking drugs. But I would be cautious about the (what appears to be exaggerated) claims of their efficacy. Maybe they are the way of future medicine. Maybe not. It is just that, after reading the book, I am not convinced one way or the other.

I am giving the book three stars. I consider this as a neutral rather than a negative rating. If the claims in this book turn out to be mostly true, it deserves at least that many stars and the book deserves a wide audience; if they don't, no harm done.

See all 412 customer reviews...

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## Download Ebook The Brain's Way of Healing: Remarkable Discoveries and Recoveries from the Frontiers of Neuroplasticity, by Norman Doidge Doc

## Download Ebook The Brain's Way of Healing: Remarkable Discoveries and Recoveries from the Frontiers of Neuroplasticity, by Norman Doidge Doc
## Download Ebook The Brain's Way of Healing: Remarkable Discoveries and Recoveries from the Frontiers of Neuroplasticity, by Norman Doidge Doc