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Sivakumar E Karnati

from Canoga Park, CA
Age ~58

Sivakumar Karnati Phones & Addresses

  • 22105 Cajun Ct, Canoga Park, CA 91303 (818) 999-0618 (818) 704-8455 (818) 621-1566
  • 6722 Independence Ave, Canoga Park, CA 91303 (818) 999-0618
  • 6530 Independence Ave, Canoga Park, CA 91303
  • Woodland Hills, CA
  • Beverly Hills, CA
  • 25100 Rye Canyon Rd, Valencia, CA 91355
  • Branford, CT
  • Los Angeles, CA
  • Atlanta, GA
  • 22105 Cajun Ct, Canoga Park, CA 91303 (818) 621-1566

Work

Position: Sales Occupations

Education

Degree: High school graduate or higher

Resumes

Resumes

Sivakumar Karnati Photo 1

Principal Software Engineer

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Location:
6722 Independence Ave, Branford, CT
Industry:
Biotechnology
Work:
Boston Scientific May 2012 - Jul 2018
Senior Software Engineer at Boston Scientific Neuromodulation

May 2012 - Jul 2018
Principal Software Engineer

Advanced Bionics May 2012 - Jul 2018
Senior Software Engineer
Education:
University of Madras 1983 - 1989
Presidency College 1987 - 1989
Master of Science, Masters, Physics
Presidency College 1983 - 1986
Bachelors, Bachelor of Science, Physics
Skills:
Agile Methodologies
C#
Integration
Object Oriented Design
Sdlc
Sql
Scrum
Software Development
Software Engineering
Test Automation
Testing
Visual Studio
Xml
Sivakumar Karnati Photo 2

Sr. Software Engineer At Boston Scientific Neuromodulation

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Position:
Sr. Software Engineer at Advanced Bionics, Sr. Software Engineer at Boston Scientific, Sr.Software Engineer at Boston Scientific Neuromodulation, Sr. Software Engineer at Boston Scientific Neuromodulation
Location:
Greater Los Angeles Area
Industry:
Computer Software
Work:
Advanced Bionics
Sr. Software Engineer

Boston Scientific since 2001
Sr. Software Engineer

Boston Scientific Neuromodulation since 2001
Sr.Software Engineer

Boston Scientific Neuromodulation since 2001
Sr. Software Engineer
Education:
Presidency College 1987 - 1989
M.Sc., Physics
University of Madras 1983 - 1989
Presidency College 1983 - 1986
B.Sc.,, PHYSICS
Sivakumar Karnati Photo 3

Sivakumar Karnati

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Publications

Us Patents

System And Method For Determining Appropriate Steering Tables For Distributing Stimulation Energy Among Multiple Neurostimulation Electrodes

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US Patent:
20100121409, May 13, 2010
Filed:
Nov 9, 2009
Appl. No.:
12/614942
Inventors:
Sridhar Kothandaraman - Valencia CA, US
Carla Mann Woods - Los Angeles CA, US
Kerry Bradley - Glendale CA, US
James R. Thacker - Eureka CA, US
Sivakumar Karnati - Canoga Park CA, US
International Classification:
A61N 1/08
US Classification:
607 46, 607 59
Abstract:
A method, computer medium, and system for programming a control device are provided. The control device is configured for controlling electrical stimulation energy provided to a plurality of electrode leads that are physically implanted within a patient in a side-by-side lead configuration. Electrical energy is conveying from the electrode leads to create a stimulation region within the patient. The stimulation region is automatically shifted along the electrode leads (e.g., by selecting and using at least one navigation table) in accordance with an electrical current shifting pattern that is based on a stagger of the side-by-side lead configuration. At least one stimulation parameter set is selected based on the effectiveness of the shifted stimulation region, and the control device is programmed with the selected stimulation parameter set(s).

System And Method For Determining Appropriate Steering Tables For Distributing Stimulation Energy Among Multiple Neurostimulation Electrodes

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US Patent:
20160367826, Dec 22, 2016
Filed:
Aug 31, 2016
Appl. No.:
15/252772
Inventors:
- Valencia CA, US
Carla Mann Woods - Beverly Hills CA, US
Kerry Bradley - Glendale CA, US
James R. Thacker - Eureka MO, US
Sivakumar Karnati - Canoga Park CA, US
International Classification:
A61N 1/372
A61N 1/36
Abstract:
A method, computer medium, and system for programming a control device are provided. The control device is configured for controlling electrical stimulation energy provided to a plurality of electrode leads that are physically implanted within a patient in a side-by-side lead configuration. Electrical energy is conveying from the electrode leads to create a stimulation region within the patient. The stimulation region is automatically shifted along the electrode leads (e.g., by selecting and using at least one navigation table) in accordance with an electrical current shifting pattern that is based on a stagger of the side-by-side lead configuration. At least one stimulation parameter set is selected based on the effectiveness of the shifted stimulation region, and the control device is programmed with the selected stimulation parameter set(s).
Sivakumar E Karnati from Canoga Park, CA, age ~58 Get Report