IP Library Granted Patent US 9,302,097
Granted Patent B2
US 9,302,097 · App. 13/555,320 · Granted Apr 5, 2016

Implantable lead with tethers

Inventor: Jacob Amrani (Scottsdale, AZ)
A61N1/0553A61N1/0558Y10T29/49002
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Quick Facts
Patent No.
US 9,302,097
App. No.
13/555,320
Granted
Apr 5, 2016
Kind
B2
Abstract

An implantable lead for electrical stimulation of a spinal cord is disclosed. The implantable lead has a paddle having a surface and a first and a second end, an electrode array positioned and arranged on the surface of the paddle, and at least one tether having an end that extends from one of the first and the second end of the paddle. The electrode array has at least one electrode contact configured to communicate with a corresponding electrode and a conductor. The implantable lead may be included in a kit that also has a securing device and instructions for implanting the implantable lead into the spinal cord. A method of making the implantable lead configured for electric stimulation of a spinal cord is also disclosed. A method of implanting the implantable lead in a spinal canal is also disclosed.

Claims (50)

1. An implantable lead for electrical stimulation of a spinal cord, comprising:

a paddle sized to be positioned in the epidural space of the spinal canal and having a surface, a first and a second end, and a length that spans one vertebral level of the spinal cord;

an electrode array positioned and arranged on the surface of the paddle, the electrode array comprising at least one electrode contact configured to communicate with a corresponding electrode and a conductor; and

at least one tether having a portion that is connected to the paddle and an end that extends from and is unattached to one of the ends of the paddle, wherein the tether is configured to pull the paddle into the epidural space and secure the implantable lead in place.

2. The implantable lead of claim 1 , wherein each electrode contact is positioned in a recess formed below the surface.

3. The implantable lead of claim 1 , wherein the tether is integral with the paddle.

4. The implantable lead of claim 1 , wherein the portion of the tether is embedded below the surface of the paddle.

5. The implantable lead of claim 1 , wherein the portion of the tether substantially extends around a perimeter of the paddle and is positioned a distance from an edge of the paddle.

6. The implantable lead of claim 1 , wherein the tether has two unattached ends that extend from one of the ends of the paddle.

7. The implantable lead of claim 1 , wherein the electrode array comprises eight electrode contacts positioned in an array of rows and columns.

8. The implantable lead of claim 1 , further comprising a securing device configured to receive at least one of the ends of the tether.

9. A method of implanting the implantable lead of claim 1 the method comprising:

exposing a portion of a spinal cord;

passing a suture beneath at least one of a lamina or a portion of a spine at a position near the exposed portion of the spinal cord;

pulling, using the suture, the unattached end of the tether in a distal direction to insert the paddle into an epidural space of the spinal canal; and

securing, using the tether, the lead in the epidural space.

10. The method of claim 9 , wherein the securing comprises:

making a hole in a spinous process;

passing the unattached end of the tether through the hole; and

tying the unattached end of the tether.

11. The method of claim 9 , wherein the securing comprises tying the unattached end of the tether around a spinous process.

12. The method of claim 9 , wherein the securing comprises:

making a hole in a spinous process;

inserting a securing device in the hole; and

attaching the unattached end of the tether to the securing device.

13. The method of claim 9 , wherein a portion of the tether substantially extends around a perimeter of the paddle and is positioned a distance from an edge of the paddle.

14. An implantable lead for electric stimulation of a spinal cord, comprising:

a paddle sized to be positioned in the epidural space of the spinal canal and having a surface, a distal end and a proximal end, and a length that spans one vertebral level of the spinal cord;

an electrode array positioned and arranged on the surface of the paddle, the electrode array comprising a plurality of electrode contacts each positioned in a recess formed below the surface of the paddle and configured to communicate with a corresponding electrode and a conductor; and

at least one tether is having a portion that is connected to and positioned a distance from an edge of the paddle, extending around a perimeter of the paddle, and having an end that extends from and is unattached to the distal end of the paddle, wherein the tether is configured to pull the paddle in the epidural space.

15. The implantable lead of claim 14 , wherein the portion of the tether is integral with the paddle.

16. The implantable lead of claim 14 , wherein the portion of the tether is embedded below the surface of the paddle.

17. The implantable lead of claim 14 , wherein the tether has two ends that extend from and are unattached to the distal end of the paddle.

18. The implantable lead of claim 14 , further comprising a securing device configured to receive the unattached end of the tether.

19. A method of making an implantable lead configured for electric stimulation of a spinal cord, comprising:

forming a paddle sized to be positioned in the epidural space of the spinal canal and having a surface, an end, a length that spans one vertebral level of the spinal cord, and at least one tether having a portion that is connected to the paddle and an end that is unattached to the paddle, wherein an electrode array is positioned and arranged on the surface of the paddle, the electrode array comprising at least one electrode contact configured to communicate with a corresponding electrode and a conductor, wherein the tether is configured to pull the paddle into the epidural space and secure the implantable lead in place.

20. The method according to claim 19 , wherein each electrode contact is positioned in a recess formed below the surface of the paddle.

21. The method according to claim 19 , wherein the portion of the tether is integral with the paddle.

22. The method of claim 19 , wherein the portion of the tether is embedded below the surface of the paddle.

23. The method of claim 19 , wherein the portion of the tether substantially extends around a perimeter of the paddle and is positioned a distance from an edge of the paddle.

24. A kit, comprising:

an implantable lead for electrical stimulation of a spinal cord, comprising:

a paddle sized to be positioned in the epidural space of the spinal canal and having a surface, a first and a second end, and a length that spans one vertebral level of the spinal cord;

an electrode array positioned and arranged on the surface of the paddle, the electrode array comprising at least one electrode contact configured to communicate with a corresponding electrode and a conductor; and

at least one tether having a portion that is connected to the paddle and an end that extends from and is attached to one of the ends of the paddle; and

instructions for implanting the paddle into the epidural space of the spinal canal, wherein the tether is configured to pull the paddle into the epidural space and secure the implantable lead in place.

25. The kit of claim 24 , wherein each electrode contact is positioned in a recess fanned below the surface.

26. The kit of claim 24 , wherein the portion of the tether is integral with the paddle.

27. The kit of claim 24 , wherein the portion of the tether substantially extends around a perimeter of the paddle and is positioned a distance from an edge of the paddle.

28. The kit of claim 24 , further comprising a securing device configured to receive the unattached end of the tether.

Continuity (4)
Provisional Application 61510724 · Jul 22, 2011
Provisional Application 61513736 · Aug 1, 2011
Provisional Application 61601122 · Feb 21, 2012
Related Publication 20130023974A1 · Jan 24, 2013