Neurologists Macon GA

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Charles C Wells Jr, MD
(478) 745-9050
PO Box 1035
Macon, GA
Specialties
Neurology
Gender
Male
Education
Medical School: Emory Univ Sch Of Med, Atlanta Ga 30322
Graduation Year: 1977

Data Provided by:
Joseph M Brogdon Jr, MD
(478) 743-9123
389 Mulberry St Ste 200
Macon, GA
Specialties
Neurology
Gender
Male
Education
Medical School: Vanderbilt Univ Sch Of Med, Nashville Tn 37232
Graduation Year: 1977

Data Provided by:
Thomas D Hope
(478) 743-9123
389 Mulberry St
Macon, GA
Specialty
Neurology

Data Provided by:
Julian Manly Earls Jr, MD
(478) 476-9642
3356 Vineville Ave
Macon, GA
Specialties
Neurology
Gender
Male
Education
Medical School: Case Western Reserve Univ Sch Of Med, Cleveland Oh 44106
Graduation Year: 1991

Data Provided by:
Stella I Tsai
(478) 743-9123
389 Mulberry St
Macon, GA
Specialty
Neurology

Data Provided by:
George Michael Shoffner, MD
(478) 743-9123
389 Mulberry St Ste 200
Macon, GA
Specialties
Neurology
Gender
Male
Education
Medical School: Med Coll Of Ga Sch Of Med, Augusta Ga 30912
Graduation Year: 1986
Hospital
Hospital: Upson Reg Med Ctr, Thomaston, Ga; Medical Center Of Central Geor, MacOn, Ga; Coliseum Med Ctr, MacOn, Ga
Group Practice: Neurology Associates

Data Provided by:
Hugh Smisson III, MD
(478) 743-7092
840 Pine St Ste 880
Macon, GA
Specialties
Neurological Surgery
Gender
Male
Education
Medical School: Med Coll Of Ga Sch Of Med, Augusta Ga 30912
Graduation Year: 1986

Data Provided by:
Joseph Milton Brogdon
(478) 743-9123
389 Mulberry St
Macon, GA
Specialty
Neurology

Data Provided by:
Joseph Martin Trasmonte
(478) 750-8880
840 Pine St
Macon, GA
Specialty
Pediatric Neurology

Data Provided by:
Thomas Dominick Hope, MD
(478) 743-9123
389 Mulberry St Ste 200
Macon, GA
Specialties
Neurology
Gender
Male
Education
Medical School: Univ Of Fl Coll Of Med, Gainesville Fl 32610
Graduation Year: 1976

Data Provided by:
Data Provided by:

The Flexible Brain

Modern scanning technology has shown that our brains can
adapt to changing circumstances at any age—if we let them.

April 2010

by Lisa James

Susan Barry’s eyes crossed when she was three months old. When she looked at something with her left eye, her right eye would turn in, and vice versa. But after three childhood surgeries corrected her appearance “I assumed I had fine vision, even though I had a hard time learning how to drive,” says Barry, a professor of biological sciences at Mount Holyoke College in Massachusetts. “Then I got into college and learned I didn’t have stereovision—I took all these 3D tests and didn’t pass them.” Barry had strabismus, a misalignment of the eyes that confuses the brain and causes loss of 3D vision.

What’s worse, “the same day I learned I didn’t have stereovision I learned I could never get it,” says Barry. That’s because the developing brain was thought to be like a vat of drying concrete: The flexibility that allowed a young child’s brain to acquire skills such as stereovision was simply lost by the time a person reached adulthood. Barry would even use herself as an example in passing along that conventional wisdom to her students.

Barry’s perspective changed, literally and figuratively, when she consulted a developmental optometrist, someone who specializes in problems with binocular vision. “She told me, ‘Your eyes don’t point at the same place in space at the same time,’” Barry recalls. Barry started doing vision exercises with aids such as a Brock string, a series of colored beads on a string that taught her eyes how to work in unison.

At age 48, Barry was finally able to perceive 3D images. “The first time you see in stereo is incredible,” says Barry, who has written about her experience in Fixing My Gaze: A Scientist’s Journey into Seeing in Three Dimensions (Basic Books). “You see that the leaves on a tree have layers of depth; before that the tree seemed sort of flat.”

Barry’s eyes remained the same, but her brain had changed. So had her beliefs about the brain’s limitations. Barry had experienced neuroplasticity, the idea that the brain is capable of renewing itself and remaining flexible no matter how old you are.

New Pathways

The brain contains about 100 billion neurons, which carry the electrical charges that make up nerve impulses. They do not touch each other directly. Instead, chemicals called neurotransmitters carry messages across small spaces known as synapses between neurons.

Over the past several decades, sophisticated brain scans such as functional MRI (fMRI) and PET have turned scientific thinking about the brain on its head. “They began to see that different areas of the brain build more synapses,” says Patt Lind-Kyle, leader of workshops in brain/mind exploration and author of Heal Your Mind, Rewire Your Brain (Energy Psychology Press, www.healrewireyourbrain.com ). “In the areas that you use, brain cells grow and multiply.” Barry says that su...

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