IP Library Granted Patent US 8,897,870
Granted Patent B2
US 8,897,870 · App. 13/846,663 · Granted Nov 25, 2014

Stimulation design for neuromodulation

Inventor: Dirk De Ridder (Zelate, BE)
Assignee: Advanced Neuromodulation Systems, Inc.
A61N1/3606A61N2/006A61N1/36085A61N1/36032A61N1/36021A61N1/36096A61N1/0531A61N1/36017A61N1/0553A61N1/0529A61N1/36117A61N1/36071A61N1/3611A61N1/361A61M5/14276
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Quick Facts
Patent No.
US 8,897,870
App. No.
13/846,663
Granted
Nov 25, 2014
Kind
B2
Abstract

The present application relates to a new stimulation design which can be utilized to treat neurological conditions. The stimulation system produces a burst mode stimulation which alters the neuronal activity of the predetermined site, thereby treating the neurological condition or disorder. The burst stimulus comprises a plurality of groups of spike pulses having a maximum inter-spike interval of 100 milliseconds. The burst stimulus is separated by a substantially quiescent period of time between the plurality of groups of spike pulses. This inter-group interval may comprise a minimum of 5 seconds.

Claims (13)

1. A method of stimulating nerve tissue of a patient using an implantable pulse generator, the method comprising:

generating, by the implantable pulse generator, a burst stimulus that comprises a repeating pattern of a plurality of groups of pulses, wherein the burst stimulus is substantially quiescent between each adjacent group of pulses, wherein pulses within each group of pulses are repeated at a pulse rate of approximately 500 Hz and groups of pulses within the plurality of groups are repeated at approximately 40 Hz, wherein the burst stimulus is adapted to repetitively cause a group of stimulated neurons to experience a rise above a resting electrical potential to a reference potential, to be maintained at or above the reference potential for a duration of multiple pulses of a respective group of pulses, and to experience spiking from the multiple pulses of the respective group of pulses;

providing the burst stimulus from the implantable pulse generator to a medical lead; and

treating chronic pain in the patient by applying the burst stimulus to afferent somatosensory fibers of the dorsal column the patient via one or several electrodes of the medical lead.

2. The method of claim 1 further comprising: controlling a number of pulses within a group of pulses of the burst stimulus according a parameter stored in the implantable pulse generator.

3. The method of claim 1 further comprising: controlling a pulse amplitude according to a parameter stored in the implantable pulse generator.

4. The method of claim 1 further comprising: controlling a pulse-to-pulse interval according to a parameter stored in the implantable pulse generator.

5. The method of claim 1 further comprising: controlling a group-to-group interval according to a parameter stored in the implantable pulse generator.

6. The method of claim 1 further comprising: controlling a number of groups within the burst stimulus according to a parameter stored in the implantable pulse generator.

7. The method of claim 1 further comprising: generating a hyperpolarizing pulse immediately before each group of pulses within the burst stimulus.

8. The method of claim 7 wherein an amplitude of the hyperpolarizing pulse is controllable by a parameter stored in the implantable pulse generator.

9. The method of claim 1 further comprising: detecting, by the implantable pulse generator, hyperactivity within neural tissue using a sensor in the implantable pulse generator, wherein the generating the burst stimulus occurs in response to the detecting.

10. The method of claim 9 wherein the sensor is coupled to one or several electrodes of the medical lead.

Continuity (5)
Continuation 13314966 · Dec 8, 2011
Continuation 12790505 · May 28, 2010
Continuation 11254465 · Oct 20, 2005
Provisional Application 60620781 · Oct 21, 2004
Related Publication 20130231713A1 · Sep 5, 2013