IP Library Granted Patent US 9,205,261
Granted Patent B2
US 9,205,261 · App. 13/706,100 · Granted Dec 8, 2015

Neurostimulation methods and systems

Inventors: Daniel H. Kim (Houston, TX); Mir A. Imran (Los Altos, CA); Jeffery M. Kramer (San Francisco, CA)
Assignees: The Board of Trustees of the Leland Stanford Junior University; Spinal Modulation, Inc.
A61N1/36071A61N1/0558A61N1/36164A61B5/01A61B5/4836A61N1/0551A61N1/0568A61N1/36017A61N1/36021
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Quick Facts
Patent No.
US 9,205,261
App. No.
13/706,100
Granted
Dec 8, 2015
Kind
B2
Abstract

Some embodiments of the present invention provide stimulation systems and components for selective stimulation and/or neuromodulation of one or more dorsal root ganglia through implantation of an electrode on, in or around a dorsal root ganglia. Some other embodiments of the present invention provide methods for selective neurostimulation of one or more dorsal root ganglia as well as techniques for applying neurostimulation to the spinal cord. Still other embodiments of the present invention provide stimulation systems and components for selective stimulation and/or neuromodulation of one or more dorsal root ganglia through implantation of an electrode on, in or around a dorsal root ganglia in combination with a pharmacological agent.

Claims (43)

1. A method of stimulating a target dorsal root ganglion of a patient, comprising:

implanting at least one electrode in proximity to the target dorsal root ganglion; and

activating the at least one electrode to deliver neurostimulation energy to at least a portion of the target dorsal root ganglion, without passing the neurostimulation energy through an intervening physiological structure, to selectively stimulate at least a portion of the target dorsal root ganglion to create paresthesia in an area of the patient's body.

2. A method as in claim 1 , wherein activating the at least one electrode to selectively stimulate comprises providing stimulation energy below a threshold for stimulating a ventral root associated with the target dorsal root ganglion.

3. A method as in claim 1 , wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy that stimulates sensory nerves without stimulating motor nerves.

4. A method as in claim 1 , wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy which preferentially stimulates myelinated fibers over unmyelinated fibers.

5. A method as in claim 1 , wherein intensity and/or distribution of the paresthesia lacks clinically significant changes during movement of the patient.

6. A method as in claim 5 , wherein movement of the patient comprises movement of the patient from an upright position to a recumbent position or vice versa.

7. A method as in claim 5 , wherein movement of the patient comprises flexion, extension or rotation of a portion of a spine of the patient.

8. A method as in claim 5 , wherein the lack of clinically significant changes during movement of the patient is due to anchoring of the electrode in position by an anchor.

9. A method as in claim 5 , wherein the lack of clinically significant changes during movement of the patient is achieved without the use of an anchor.

10. A method of stimulating a target dorsal root ganglion of a patient, comprising:

implanting at least one electrode in proximity to the target dorsal root ganglion so that the at least one electrode maintains its position in proximity to the target dorsal root ganglion throughout a body position change of the patient; and

activating the at least one electrode to deliver neurostimulation energy to at least a portion of the target dorsal root ganglion, without passing the neurostimulation energy through an intervening physiological structure, to selectively stimulate at least a portion of the target dorsal root ganglion.

11. A method as in claim 10 , wherein activating the at least one electrode to selectively stimulate comprises providing stimulation energy below a threshold for stimulating a ventral root associated with the target dorsal root ganglion.

12. A method as in claim 10 , wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy that stimulates sensory nerves without stimulating motor nerves.

13. A method as in claim 10 , wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy which preferentially stimulates myelinated fibers over unmyelinated fibers.

14. A method as in claim 10 , wherein the body position change of the patient comprises moving to a recumbent position from an upright position or vice versa.

15. A method as in claim 10 , wherein the body position change of the patient comprises flexion, extension or rotation of a portion of a spine of the patient.

16. A method as in claim 10 , wherein maintaining position of the at least one electrode maintains intensity of paresthesia.

17. A method as in claim 10 , wherein maintaining position of the at least one electrode maintains distribution of paresthesia.

18. A method as in claim 10 , wherein maintaining position of the at least one electrode maintains intensity and distribution of paresthesia.

19. A method as in claim 10 , wherein the at least one electrode maintains its position due to anchoring by an anchor.

20. A method as in claim 10 , wherein the at least one electrode maintains its position without the use of an anchor.

21. A method of stimulating a target dorsal root ganglion of a patient, comprising:

implanting at least one electrode in proximity to the target dorsal root ganglion; and

activating the at least one electrode to selectively stimulate at least a portion of the target dorsal root ganglion to create paresthesia in an area of the patient's body, wherein activating the at least one electrode to selectively stimulate comprises providing stimulation energy below a threshold for stimulating a ventral root associated with the target dorsal root ganglion.

22. A method as in claim 1 , wherein intensity and/or distribution of the paresthesia lacks clinically significant changes during movement of the patient.

23. A method as in claim 22 , wherein movement of the patient comprises movement of the patient from an upright position to a recumbent position or vice versa.

24. A method as in claim 22 , wherein movement of the patient comprises flexion, extension or rotation of a portion of a spine of the patient.

25. A method as in claim 22 , wherein the lack of clinically significant changes during movement of the patient is due to anchoring of the electrode in position by an anchor.

26. A method as in claim 22 , wherein the lack of clinically significant changes during movement of the patient is achieved without the use of an anchor.

27. A method of stimulating a target dorsal root ganglion of a patient, comprising:

implanting at least one electrode in proximity to the target dorsal root ganglion; and

activating the at least one electrode to selectively stimulate at least a portion of the target dorsal root ganglion to create paresthesia in an area of the patient's body, wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy which preferentially stimulates myelinated fibers over unmyelinated fibers.

28. A method as in claim 27 , wherein intensity and/or distribution of the paresthesia lacks clinically significant changes during movement of the patient.

29. A method as in claim 28 , wherein movement of the patient comprises movement of the patient from an upright position to a recumbent position or vice versa.

30. A method as in claim 28 , wherein movement of the patient comprises flexion, extension or rotation of a portion of a spine of the patient.

31. A method as in claim 28 , wherein the lack of clinically significant changes during movement of the patient is due to anchoring of the electrode in position by an anchor.

32. A method as in claim 28 , wherein the lack of clinically significant changes during movement of the patient is achieved without the use of an anchor.

33. A method of stimulating a target dorsal root ganglion of a patient, comprising:

implanting at least one electrode in proximity to the target dorsal root ganglion; and

activating the at least one electrode to selectively stimulate at least a portion of the target dorsal root ganglion to create paresthesia in an area of the patient's body, wherein activating the at least one electrode to selectively stimulate comprises providing a stimulation energy that stimulates sensory nerves without stimulating motor nerves.

Assignments (5)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 14, 2023
From: ST. JUDE MEDICAL LUXEMBOURG HOLDINGS SMI S.A.R.L. ("SJM LUX SMI")
To: TC1 LLC
Reel/Frame 064903/0680 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2015
From: SPINAL MODULATION LLC
To: ST. JUDE MEDICAL LUXEMBOURG HOLDINGS SMI S.A.R.L. ("SJM LUX SMI")
Reel/Frame 037199/0142 →
CHANGE OF NAME Recorded Nov 20, 2015
From: SPINAL MODULATION, INC.
To: SPINAL MODULATION LLC
Reel/Frame 037150/0872 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2013
From: IMRAN, MIR A.; KRAMER, JEFFERY M.
To: SPINAL MODULATION, INC.
Reel/Frame 030790/0067 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2013
From: KIM, DANIEL H.
To: THE BOARD OF TRUSTEES OF THE LELAND STANFORD JUNIOR UNIVERSITY
Reel/Frame 030790/0118 →
Continuity (4)
Continuation In Part 12051770 · Mar 19, 2008
Continuation 11221576 · Sep 7, 2005
Provisional Application 60608357 · Sep 8, 2004
Related Publication 20130165991A1 · Jun 27, 2013