IP Library Granted Patent US 9,694,181
Granted Patent B2
US 9,694,181 · App. 14/969,826 · Granted Jul 4, 2017

Methods of treatment of a neurological disorder using electrical nerve conduction block

Inventors: Niloy Bhadra (Cleveland Heights, OH); Narendra Bhadra (Chesterland, OH); Kevin L. Kilgore (Avon Lake, OH); Scott Lempka (Cleveland Heights, OH); Jesse Wainright (Willoughby Hills, OH); Tina Vrabec (Willoughby Hills, OH); Manfred Franke (Redwood City, CA)
Assignee: Case Western Reserve University
A61N1/36071A61N1/3615A61N1/37247A61N1/0551A61N1/06A61N1/20A61N1/36057A61N1/36067A61N1/36103A61N1/36171
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Quick Facts
Patent No.
US 9,694,181
App. No.
14/969,826
Granted
Jul 4, 2017
Kind
B2
Abstract

Described herein are methods of treating various neurological disorders using electrical nerve conduction block (ENCB) without causing electrochemical damage. Examples of the various neurological disorders can include pain, muscle spasticity, hyperhidrosis, vertigo, sialorrhea, or the like. The methods can include placing an electrode contact in electrical communication with a nerve that transmits a signal related to the neurological disorder. The method also includes applying an ENCB to the nerve through the electrode contact. The electrode contact can include a high charge capacity material that prevents formation of damaging electrochemical reaction products at a charge delivered by the ENCB. The method also includes blocking transmission of the signal related to the neurological disorder through the nerve with the ENCB to treat the neurological disorder.

Claims (33)

1. A method for reducing pain in a subject, the method comprising:

placing an electrode contact in electrical communication with a nerve that transmits a signal related to the pain;

applying an electrical nerve conduction block (ENCB) to the nerve through the electrode contact, wherein the electrode contact comprises a high charge capacity material that prevents formation of damaging electrochemical reaction products at a charge delivered by the ENCB,

wherein the high charge capacity material is capable of delivering at least 100 μC of charge before irreversible electrochemical reactions take place forming the damaging electrochemical reaction products; and

blocking transmission of the signal related to the pain through the nerve with the ENCB to reduce the pain.

2. The method of claim 1 , further comprising stopping the ENCB to restore the signal transmission through the nerve.

3. The method of claim 1 , wherein the nerve comprises at least one of a motor fiber, a sensory fiber, an autonomic fiber, and an interneuron of the nervous system and the ENCB blocks the signal transmission therethrough to reduce the pain.

4. The method of claim 1 , wherein the ENCB comprises at least one of a monophasic DC waveform, a charge balanced direct current (CBDC) waveform, a substantially CBDC waveform, and a high frequency alternating current (HFAC) waveform.

5. The method of claim 1 , wherein the electrode is placed at a location in the subject's body or on the subject's body that facilitates blocking afferent pain signals.

6. The method of claim 5 , wherein a frequency of the ENCB is adjusted so the afferent pain signals from small fibers in the nerve are blocked using a collision block.

7. The method of claim 1 , wherein the pain is due to at least one of cancer, surgery, and endometriosis.

8. A method for reducing muscle spasticity in a subject, the method comprising:

placing an electrode contact in electrical communication with a nerve that transmits a signal related to the muscle spasticity;

applying an electrical nerve conduction block (ENCB) to the nerve through the electrode contact, wherein the electrode contact comprises a high charge capacity material that prevents formation of damaging electrochemical reaction products at a charge delivered by the ENCB,

wherein the high charge capacity material is capable of delivering at least 100 μC of charge before irreversible electrochemical reactions take place forming the damaging electrochemical reaction products; and

blocking transmission of the signal through the nerve with the ENCB to stop the muscle spasticity.

9. The method of claim 8 , wherein the muscle spasticity is caused by at least one of cerebral palsy, stroke, spinal cord injury, brain injury, and multiple sclerosis.

10. The method of claim 8 , wherein the blocking the signal transmission further comprises blocking a portion of the signal transmission through the nerve to stop the spasticity, while enabling voluntary movement.

11. The method of claim 10 , further comprising adjusting a degree of the block to block a portion of the signal transmission.

12. The method of claim 11 , wherein the adjusting is accomplished according to a user input.

13. The method of claim 8 , further comprising stopping the ENCB to restore the signal transmission through the nerve.

14. The method of claim 8 , wherein the ENCB comprises at least one of a monophasic direct current waveform, a charge balanced direct current (CBDC) waveform, a substantially CBDC waveform, and a high frequency alternating current (HFAC) waveform.

15. A method for treating a disorder in a subject, the method comprising:

placing an electrode contact in electrical communication with a nerve that transmits a signal related to the disorder;

applying an electrical nerve conduction block (ENCB) to the nerve through the electrode contact, wherein the electrode contact comprises a high charge capacity material that prevents formation of damaging electrochemical reaction products at a charge delivered by the ENCB,

wherein the high charge capacity material is capable of delivering at least 100 μC of charge before irreversible electrochemical reactions take place forming the damaging electrochemical reaction products; and

blocking transmission of the signal related to the disorder through the nerve with the ENCB to treat the disorder,

wherein the disorder is at least one of hyperhidrosis, vertigo, and sialorrhea.

16. The method of claim 15 , wherein the ENCB comprises at least one of a monophasic direct current waveform, a charge balanced direct current (CBDC) waveform, a substantially CBDC waveform, and a high frequency alternating current (HFAC) waveform.

17. The method of claim 15 , wherein the ENCB is applied to a motor fiber, a sensory fiber, or an autonomic fiber of the nerve to block the signal transmission therethrough to treat the disorder.

18. The method of claim 1 , wherein the high charge capacity material is platinum black or titanium nitride.

19. The method of claim 8 , wherein the high charge capacity material is platinum black or titanium nitride.

20. The method of claim 15 , wherein the high charge capacity material is platinum black or titanium nitride.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 27, 2017
From: BHADRA, NILOY; KILGORE, KEVIN L.; BHADRA, NARENDRA; WAINRIGHT, JESSE; VRABEC, TINA; FRANKE, MANFRED; LEMPKA, SCOTT
To: CASE WESTERN RESERVE UNIVERSITY
Reel/Frame 041383/0430 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 15, 2016
From: BHADRA, NILOY; KILGORE, KEVIN L.; BHADRA, NARENDRA; WAINRIGHT, JESSE; VRABEC, TINA; FRANKE, MANFRED
To: CASE WESTERN RESERVE UNIVERSITY
Reel/Frame 039432/0269 →
CONFIRMATORY LICENSE Recorded Jul 8, 2016
From: CASE WESTERN RESERVE UNIVERSITY
To: NATIONAL INSTITUTES OF HEALTH (NIH), U.S. DEPT. OF HEALTH AND HUMAN SERVICES (DHHS), U.S. GOVERNMENT
Reel/Frame 039292/0441 →
Continuity (5)
Continuation In Part 14408017
Provisional Application 62094235 · Dec 19, 2014
Provisional Application 61660383 · Jun 15, 2012
Provisional Application 61821862 · May 10, 2013
Related Publication 20160101286A1 · Apr 14, 2016