IP Library Granted Patent US 9,277,874
Granted Patent B2
US 9,277,874 · App. 14/114,390 · Granted Mar 8, 2016

Fault-tolerant multielectrode array for brain implantable device

Inventors: Bharat S. Joshi (Pineville, NC); Ipsita Acharya (Charlotte, NC); Hitten P. Zaveri (New Haven, CT)
Assignees: YALE UNIVERSITY; THE UNIVERSITY OF NORTH CAROLINA AT CHARLOTTE
A61B5/0478A61B5/0476A61B2560/066A61B2562/04
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Quick Facts
Patent No.
US 9,277,874
App. No.
14/114,390
Granted
Mar 8, 2016
Kind
B2
Abstract

A multielectrode array with fault-tolerance for use in conjunction with a brain implantable device includes a sensor grid composed of a plurality of sensors, the plurality of sensors including primary sensors and spare sensors. The multielectrode array also includes signal processing circuitry associated with the plurality of sensors and a control system associated with the sensor grid for replacing faulty primary sensors with spare sensors.

Claims (10)

1. A multielectrode array with fault-tolerance for use in conjunction with a brain implantable device, comprising:

a sensor grid composed of a plurality of sensors, the plurality of sensors including primary sensors and spare sensors, wherein each of the primary sensors is linked to an amplifier to define a primary sensor module and each of the spare sensors is linked to an amplifier to define a spare sensor module, the spare sensors being placed in interstitial sites between primary sensors;

signal processing circuitry associated with the plurality of sensors identifying faulty primary sensor modules and available spare sensor modules; and

a control system associated with the sensor grid for replacing faulty primary sensor modules with spare sensor modules via reconfiguration of the plurality of sensors.

2. The multielectrode array according to claim 1 , wherein signal processing circuitry includes a primary A/D converter and a spare A/D converter.

3. A brain implantable device for control of epilepsy, comprising:

a multielectrode array with fault-tolerance including a sensor grid composed of a plurality of sensors, the plurality of sensors including primary sensors and spare sensors, wherein each of the primary sensors is linked to an amplifier to define a primary sensor module and each of the spare sensors is linked to an amplifier to define a spare sensor module, the spare sensors being placed in interstitial sites between primary sensors, the multielectrode array also including signal processing circuitry associated with the plurality of sensors identifying faulty primary sensor modules and available spare sensor modules and a control system associated with the sensor grid for replacing faulty primary sensor modules with spare sensor modules via reconfiguration of the plurality of sensors; and

external circuitry associated with the multielectrode array for receiving EEG signals generated by the multielectrode array;

wherein each of the primary sensors is linked to an amplifier to define a primary sensor module and each of the spare sensors is linked to an amplifier to define a spare sensor module and the control system replaces faulty primary sensor modules with spare sensor modules.

4. The brain implantable device according to claim 3 , wherein signal processing circuitry includes a primary A/D converter and a spare A/D converter.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2013
From: ZAVERI, HITTEN P.
To: YALE UNIVERSITY
Reel/Frame 031510/0216 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 30, 2013
From: JOSHI, BHARAT S.; ACHARYA, IPSITA
To: THE UNIVERSITY OF NORTH CAROLINA AT CHARLOTTE
Reel/Frame 031515/0639 →
Continuity (2)
Provisional Application 61479982 · Apr 28, 2011
Related Publication 20140058239A1 · Feb 27, 2014