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Bharat H Joshi, 47Webberville, TX

Bharat Joshi Phones & Addresses

Manor, TX   

Chicago, IL   

Milwaukee, WI   

6620 Appletree St, Hanover Park, IL 60133    630-2132750   

Hoffman Estates, IL   

Schaumburg, IL   

Work

Company: Eurom onitor international 2013 Position: Global business development manager

Education

School / High School: Columbia College Chicago- Chicago, IL 2013 Specialities: Bachelor of Arts in Film and Video, Marketing

Mentions for Bharat H Joshi

Career records & work history

Medicine Doctors

Bharat Joshi Photo 1

Bharat Dev Joshi

Specialties:
Family Medicine
Education:
Sher-E-Bangla Medical College (2009)

Bharat Joshi resumes & CV records

Resumes

Bharat Joshi Photo 42

Bharat Joshi - Chicago, IL

Work:
EUROM ONITOR INTERNATIONAL 2013 to 2000
Global Business Development Manager
SEED MEDIA ARTS - Chicago, IL 2012 to 2013
Business Development
LUMINAR FILM PRODUCTION - Chicago, IL 2012 to 2012
Creative team and research
FIRST CAPITAL DIRECT - Chicago, IL 2001 to 2010
Business Development Manager
Education:
Columbia College Chicago - Chicago, IL 2013
Bachelor of Arts in Film and Video, Marketing

Publications & IP owners

Us Patents

Wireless System For Epilepsy Monitoring And Measurement

US Patent:
2009014, Jun 11, 2009
Filed:
Aug 1, 2008
Appl. No.:
12/184663
Inventors:
David A. Putz - Pewaukee WI, US
Bharat S. Joshi - Pineville NC, US
Bruce Lanning - Littleton CO, US
James A. Nolan - Lakewood CO, US
Gregory J. Nuebel - Bailey CO, US
Dennis D. Spencer - Woodbridge CT, US
Hitten P. Zaveri - New Haven CT, US
International Classification:
A61N 1/36
A61B 5/0476
A61B 5/053
US Classification:
607 45, 600544, 600547
Abstract:
A wireless system for monitoring a patient's brain tissue including (1) a plurality of electrodes abutting brain tissue, (2) main circuitry outside the patient's body to transmit power at radio frequencies and send/receive data using infrared energy, and (3) subcutaneously-implanted remote circuitry connected to the electrodes and configured to (a) receive transmitted RF power, (b) capture and digitize EEG signals from the electrodes, and (c) send/receive data to/from the main circuitry using IR energy, including sending digitized EEG signals from each electrode to capture the full bandwidth of each EEG signal. The system preferably includes circuitry to measure the electrical impedance of each electrode for real-time monitoring of the condition of the electrode/tissue interfaces to enhance interpretation of captured EEG signals.

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