IP Library Granted Patent US 10,065,036
Granted Patent B2
US 10,065,036 · App. 11/906,167 · Granted Sep 4, 2018

Method for measuring stable and reproducible electrode-tissue impedance

Inventors: Amy Chu Peishuan Hines (Monterey Park, CA); Dao Min Zhou (Saugus, CA); Arup Roy (Valencia, CA); Rongqing Dai (Valencia, CA); Robert J. Greenberg (Los Angeles, CA)
Assignee: Second Sight Medical Products, Inc.
A61N1/36046A61N1/0543
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Quick Facts
Patent No.
US 10,065,036
App. No.
11/906,167
Granted
Sep 4, 2018
Kind
B2
Abstract

The present invention is a method for measuring stable and reproducible electrode-tissue impedance, comprising preconditioning an electrode-tissue interface. Further aspect of the invention is a stimulation system for a visual prosthesis generating a stimulation signal to precondition the electrode-tissue interface, comprising a computer; software, loaded in the computer, adapted to perform a stimulating method for a visual prosthesis having a plurality of electrodes; a video processing unit; and an implanted neuron-stimulator.

Claims (12)

1. A stimulation system for a visual prosthesis generating a stimulation signal to precondition an electrode-tissue interface, comprising:

a computer;

an implanted neural-stimulator, including a plurality of electrodes suitable to contact neural tissue;

a video processing unit in communication with the computer and the implanted neural stimulator; and

software, loaded in the computer, adapted to instruct the implanted neural stimulator through the video processing unit to deliver a first small electrical charge causing a non-faradaic reaction in the electrode tissue interface, including charge balanced biphasic square wave current pulses, for a predetermined duration of 1 second to 10 minutes, to deliver a second electrical charge within a predetermined delay of the predetermined duration and measure impedance after delivering the second electrical charge, and then to perform a stimulating method for a visual prosthesis having a plurality of electrodes.

2. The stimulation system for a visual prosthesis according to claim 1 , configured to deliver the second electrical charge at similar electrode-tissue interface conditions to the first small electrical charge.

3. The stimulation system for a visual prosthesis according to claim 1 configured to deliver the first small electrical charge one electrode at a time or in groups of electrodes.

4. The stimulation system for a visual prosthesis according to claim 1 configured to deliver the first small electrical charge for all electrodes in an array of electrodes simultaneously.

5. The stimulation system for a visual prosthesis according to claim 4 configured to vary the first small electrical charge by pulse-width, amplitude and frequency.

6. The stimulation system for a visual prosthesis according to claim 1 , configured to deliver the first small electrical charge at 10-300 μA at 15-120 Hz with 0.1-2.0 ms pulse width.

7. The stimulation system for a visual prosthesis according to claim 1 , configured to deliver the first small electrical charge at 30-150 μA at 30-120 Hz with 0.2-1.0 ms pulse width.

8. The stimulation system for a visual prosthesis according to claim 1 , configured to deliver the first small electrical charge at 80-120 μA at 40-60Hz with 0.4-0.6 ms pulse width.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 3, 2023
From: VIVANI MEDICAL, INC.
To: CORTIGENT, INC.
Reel/Frame 062589/0167 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 28, 2007
From: HINES, AMY CHU PEISHUAN; ZHOU, DAO MIN; ROY, ARUP; DAI, RONGQING; GREENBERG, M.D., PH.D., ROBERT J.
To: SECOND SIGHT MEDICAL PRODUCTS, INC.
Reel/Frame 020169/0710 →
Continuity (2)
Provisional Application 60848305 · Sep 29, 2006
Related Publication 20080082140A1 · Apr 3, 2008