IP Library › Granted Patent US 9,550,063
Granted Patent B2
US 9,550,063 · App. 14/336,796 · Granted Jan 24, 2017

Apparatus and method using near infrared reflectometry to reduce the effect of positional changes during spinal cord stimulation

Inventor: Erich W. Wolf, II (Lake Charles, LA)
A61N1/36071A61B5/1116A61N1/0551A61N1/36139A61N1/36157A61B5/4836A61B2562/0233A61N1/36171A61N1/36175A61N1/37264
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Quick Facts
Patent No.
US 9,550,063
App. No.
14/336,796
Granted
Jan 24, 2017
Kind
B2
Abstract

A positionally sensitive spinal cord stimulation apparatus and method using near-infrared (NIR) reflectometry are provided for automatic adjustments of spinal cord stimulation. The system comprises an electrode assembly with an integrated optical fiber sensor for sensing spinal cord position. The integrated optical fiber sensor, comprising a pair of optical elements for emitting light from an IR emitter and for collecting reflected light into a photodetector, determines a set of measured photocurrents. As the spinal cord changes position, the angles of incidence for light from the IR emitter and the measured optical intensities change. Electrode pulse characteristics are adjusted in real time, based on the set of measured optical intensities, to minimize changes in stimulation perceived by the patient during motion. The system includes automatic calibration of the optical fiber sensor when the patient is at rest, and a patient orientation detection.

Claims (43)

1. A lead connection apparatus for a stimulator controller comprising:

a lead connector, adapted to be attached to the stimulator controller, comprising a cavity;

the cavity having a side surface and an end surface;

a lead having a first end and a second end;

the second end positioned in the cavity;

a set of electrodes attached to the first end;

a set of electrical contacts, attached to the second end, and electrically connected to the set of electrodes;

an optical fiber, embedded in the lead;

an optical element, attached to the optical fiber at the first end;

a first optical coupler, attached to the optical fiber at the second end;

a set of spring connectors, attached to the cavity, in contact with the set of electrical contacts;

a second optical coupler, attached to the cavity;

an electro-optical device optically coupled through the first optical coupler and the second optical coupler to the optical fiber; and,

the spring connectors disposed only on one side of the cavity and implanted on and extending from the epoxy header adjacent the cavity.

2. The lead connection apparatus of claim 1 wherein the first optical coupler is a collimating lens.

3. The lead connection apparatus of claim 1 wherein the second optical coupler is a transparent window.

4. The lead connection apparatus of claim 1 wherein:

the first optical coupler further comprises a first polished ferrule;

the second optical coupler further comprises a second polished ferrule; and,

the first polished ferrule and the second polished ferrule form a fiber optic coupling.

5. The lead connection apparatus of claim 1 wherein the first optical coupler and the second optical coupler form an angle-polished fiber optic coupling.

6. The lead connection apparatus of claim 1 wherein the lead is a surgical lead.

7. The lead connection apparatus of claim 1 wherein the lead is a percutaneous lead.

8. The lead connection apparatus of claim 1 further comprising:

the lead connection apparatus forming part of a system comprising the stimulator controller;

the stimulator controller adapted to apply an electrode current to the lead;

the stimulator controller adapted to detect a photocurrent level of the optical fiber;

the stimulator controller adapted to store a calibration table in a memory; and,

the stimulator controller adapted to determine the electrode current from the photocurrent level based on the calibration table.

9. The lead connection apparatus of claim 1 :

wherein the first optical coupler is a collimating lens;

wherein the second optical coupler is a near-infrared (NIR) transparent window;

and further comprising:

the lead inserted into the cavity until the collimating lens is adjacent the NIR transparent window;

the cavity comprising a first cavity and a second cavity;

the second cavity connecting to the first cavity and terminating in the NIR transparent window;

the NIR transparent window forming a hermetic barrier between the second cavity and the electro-optical device;

the electro-optical device situated behind the NIR transparent window; and,

the electro-optical device being one of an optical emitter and an optical detector.

10. The lead connection apparatus of claim 9 wherein the NIR transparent window is flat.

11. The lead connection apparatus of claim 9 :

wherein the collimating lens is an optical fiber with a polished end; and,

wherein the NIR transparent window is a lens.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 23, 2020
From: WAVEGATE TECHNOLOGIES, LLC
To: WAVEGATE CORPORATION
Reel/Frame 052481/0211 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 14, 2019
From: WOLF, ERICH W., II
To: WAVEGATE TECHNOLOGIES, LLC
Reel/Frame 051286/0260 →
Continuity (6)
Continuation In Part 14019240 · Sep 5, 2013
Continuation In Part 13780470 · Feb 28, 2013
Continuation In Part 13567966 · Aug 6, 2012
Continuation 12925231 · Oct 14, 2010
Provisional Application 61867413 · Aug 19, 2013
Related Publication 20140330341A1 · Nov 6, 2014