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John D Rolston, 43Newton, MA

John Rolston Phones & Addresses

West Newton, MA   

1547 E Harvard Ave, Salt Lake Cty, UT 84105    510-2216181   

Salt Lake City, UT   

San Francisco, CA   

Atlanta, GA   

Yorktown, VA   

Shelbyville, TN   

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John D Rolston

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Work

Position: Deputy sheriff

Education

School / High School: Emory University 2007

Languages

English

Mentions for John D Rolston

Career records & work history

Medicine Doctors

John Rolston Photo 1

Dr. John D Rolston, San Francisco CA - MD (Doctor of Medicine)

Specialties:
Neurosurgery
Address:
505 Parnassus Ave Suite M779, San Francisco, CA 94143
415-3533904 (Phone) 415-3533907 (Fax)
Languages:
English
Education:
Medical School
Emory University
Graduated: 2007

John Rolston

Specialties:
Surgery , Neurological
Work:
UCSF Neurological Surgery
505 Parnassus Ave STE M779, San Francisco, CA 94143
415-3533904 (phone) 415-3533907 (fax)
Education:
Medical School
Emory University School of Medicine
Graduated: 2011
Languages:
English
Description:
Dr. Rolston graduated from the Emory University School of Medicine in 2011. He works in San Francisco, CA and specializes in Surgery , Neurological. Dr. Rolston is affiliated with UCSF Medical Center Parnassus.
John Rolston Photo 2

John Rolston

John Rolston resumes & CV records

Resumes

John Rolston Photo 30

Deputy Sheriff

Work:

Deputy Sheriff

Publications & IP owners

Us Patents

Microelectrode Stimulation For Treatment Of Epilepsy Or Other Neurologic Disorder

US Patent:
2011022, Sep 15, 2011
Filed:
Aug 27, 2009
Appl. No.:
13/061212
Inventors:
John Rolston - Atlanta GA, US
Robert Gross - Decatur GA, US
Steve M. Potter - Atlanta GA, US
Assignee:
Emory University - Atlanta GA
Georgia Tech Research Corporation - Atlanta GA
International Classification:
A61N 1/36
US Classification:
607 45
Abstract:
Methods for treating a neurologic disorder by neurostimulation. The stimulation may be applied using electromagnetic energy. In certain embodiments, distributed electrical stimulation is applied to a target site of the brain in an ongoing fashion. A microelectrode array may be used to provide the distributed electrical stimulation. The method may also comprise the detection of electrophysiologic signals from the brain. These detected signals may be analyzed and used for closed-loop feedback of the neurostimulation. Also provided are systems for neurostimulation and software for operating such systems.

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