IP Library › Granted Patent US 8,649,873
Granted Patent B2
US 8,649,873 · App. 13/920,986 · Granted Feb 11, 2014

Deep brain stimulation current steering with split electrodes

Inventors: Michael Adam Moffitt (Valencia, CA); Thomas A. Oleksyn (Valencia, CA); Kerry Bradley (Glendale, CA); David Karl Lee Peterson (Valencia, CA); Courtney Lane (Ventura, CA); Anne Margaret Pianca (Santa Monica, CA)
Assignee: Boston Scientific Neuromodulation Corporation
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Quick Facts
Patent No.
US 8,649,873
App. No.
13/920,986
Granted
Feb 11, 2014
Kind
B2
Abstract

A device for brain stimulation includes a lead having a longitudinal surface, a proximal end, a distal end and a lead body. The device also includes a plurality of electrodes disposed along the longitudinal surface of the lead near the distal end of the lead. The plurality of electrodes includes a first set of segmented electrodes comprising at least two segmented electrodes disposed around a circumference of the lead at a first longitudinal position along the lead; and a second set of segmented electrodes comprising at least two segmented electrodes disposed around a circumference of the lead at a second longitudinal position along the lead. The device further includes one or more conductors that electrically couple together all of the segmented electrodes of the first set of segmented electrodes.

Claims (43)

1. An implantable stimulation lead, comprising:

a lead body having a longitudinal surface, a proximal end and a distal end; and

a plurality of electrodes disposed along the longitudinal surface of the lead body near the distal end of the lead body, the plurality of electrodes comprising:

a first ring electrode disposed at a first longitudinal position along the lead body,

a first set of segmented electrodes comprising at least three segmented electrodes disposed around a circumference of the lead body at a second longitudinal position along the lead body,

a second set of segmented electrodes comprising at least three segmented electrodes disposed around a circumference of the lead body at a third longitudinal position along the lead body, and

a second ring electrode disposed at a fourth longitudinal position along the lead body, wherein the second and third longitudinal positions are between the first and fourth longitudinal positions;

wherein each of the plurality of electrodes is configured and arranged to be individually coupleable to different stimulation channels of a control module and to be independently programmable to provide current steering.

2. The lead of claim 1 , wherein the first set of segmented electrodes consists of three segmented electrodes.

3. The lead of claim 2 , wherein the second set of segmented electrodes consists of three segmented electrodes.

4. The lead of claim 1 , wherein the first set of segmented electrodes and the second set of segmented electrodes have a same number of segmented electrodes.

5. The lead of claim 4 , wherein the segmented electrodes of the first set are aligned with the segmented electrodes of the second set along the longitudinal surface of the lead body.

6. The lead of claim 4 , wherein the segmented electrodes of the first set are staggered with respect to the segmented electrodes of the second set along the longitudinal surface of the lead body.

7. The lead of claim 1 , wherein the lead is configured and arranged for implantation in a brain of a human.

8. An implantable stimulation system, comprising:

the lead of claim 1 ; and

a control module coupleable to the lead.

9. The implantable stimulation system of claim 8 , wherein the control module is a constant-current device.

10. An implantable stimulation lead, comprising:

a lead body having a longitudinal surface, a proximal end and a distal end; and

a plurality of electrodes disposed along the longitudinal surface of the lead body near the distal end of the lead body, the plurality of electrodes comprising:

a tip electrode disposed at, and covering, the distal end of the lead body,

a first set of segmented electrodes comprising at least three segmented electrodes disposed around a circumference of the lead body at a first longitudinal position along the lead body, and

a second set of segmented electrodes comprising at least three segmented electrodes disposed around a circumference of the lead body at a second longitudinal position along the lead body;

wherein each of the plurality of electrodes is configured and arranged to be individually coupleable to different stimulation channels of a control module and to be independently programmable to provide current steering.

11. The lead of claim 10 , wherein the plurality of electrodes further comprises a ring electrode disposed at a third longitudinal position along the lead body.

12. The lead of claim 11 , wherein the third longitudinal position is proximal to the first and second longitudinal positions along the lead body.

13. The lead of claim 11 , wherein the tip electrode has a surface area larger than at least one of the segmented electrodes of the first set of segmented electrodes.

14. The lead of claim 11 , wherein the lead is configured and arranged for implantation in a brain of a human.

15. The lead of claim 11 , wherein the first set of segmented electrodes consists of three segmented electrodes.

16. The lead of claim 15 , wherein the second set of segmented electrodes consists of three segmented electrodes.

17. An implantable stimulation system, comprising:

the lead of claim 10 ; and

a control module coupleable to the lead.

18. The implantable stimulation system of claim 17 , wherein the control module is a constant-current device.

19. A method for brain stimulation, the method comprising:

inserting the lead of claim 1 into a brain of a human;

coupling the lead to a control module; and

generating electrical signals, using the control module, at one or more of the plurality of electrodes to stimulate at least one target neuron of the brain.

20. A method for brain stimulation, the method comprising:

inserting the lead of claim 10 into a brain of a human;

coupling the lead to a control module; and

generating electrical signals, using the control module, at one or more of the plurality of electrodes to stimulate at least one target neuron of the brain.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 3, 2013
From: MOFFITT, MICHAEL ADAM; OLEKSYN, THOMAS A.; BRADLEY, KERRY; PETERSON, DAVID KARL LEE; LANE, COURTNEY; PIANCA, ANNE MARGARET
To: BOSTON SCIENTIFIC NEUROMODULATION CORPORATION
Reel/Frame 030735/0203 →
Continuity (4)
Continuation 12761622 · Apr 16, 2010
Provisional Application 61170037 · Apr 16, 2009
Provisional Application 61316759 · Mar 23, 2010
Related Publication 20130289651A1 · Oct 31, 2013