IP Library › Granted Patent US 9,937,350
Granted Patent B2
US 9,937,350 · App. 15/370,184 · Granted Apr 10, 2018

Systems and methods for avoiding neural stimulation habituation

Inventors: Imad Libbus (St. Paul, MN); Andrew P. Kramer (Marine on St. Croix, MN)
Assignee: Cardiac Pacemakers, Inc.
A61N1/36117A61N1/36053A61N1/36057A61N1/36114A61N1/36167A61N1/37235
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Quick Facts
Patent No.
US 9,937,350
App. No.
15/370,184
Granted
Apr 10, 2018
Kind
B2
Abstract

An embodiment relates to a method for delivering a vagal stimulation therapy to a vagus nerve, including delivering a neural stimulation signal to non-selectively stimulate both afferent axons and efferent axons in the vagus nerve according to a predetermined schedule for the vagal stimulation therapy, and selecting a value for at least one parameter for the predetermined schedule for the vagal stimulation therapy to control the neural stimulation therapy to avoid physiological habituation to the vagal stimulation therapy. The parameter(s) include at least one parameter selected from the group of parameters consisting of a predetermined therapy duration parameter for a predetermined therapy period, and a predetermined intermittent neural stimulation parameter associated with on/off timing for the intermittent neural stimulation parameter.

Claims (27)

1. A vagus nerve stimulator, comprising:

a lead with an electrode;

a pulse generator configured to cooperate with the electrode to non-selectively stimulate a vagus nerve by propagating action potentials in both afferent axons and efferent axons along the vagus nerve and avoid side effects, including intermittently delivering a pulsed electrical signal as a train of pulses during signal ON times separated by signal OFF time when pulses are not delivered, wherein the train of pulses have a pulse frequency, and the intermittently-delivered pulsed electrical signal has a duty cycle represented as a signal ON time portion of a stimulation period; and

at least one leadless electrode configured for use to detect heart rate.

2. The vagus nerve stimulator of claim 1 , wherein the pulse generator is configured to use detected heart rate to titrate an intensity of the pulsed electrical signal.

3. The vagus nerve stimulator of claim 1 , wherein the duty cycle comprises a value about 17%.

4. The vagus nerve stimulator of claim 3 , wherein the pulsed electric signal includes 10 seconds on and 50 seconds off to provide the 17% duty cycle.

5. The vagus nerve stimulator of claim 3 , wherein intermittently delivering a pulsed electrical signal affects heart rate during the stimulation ON time.

6. The vagus nerve stimulator of claim 1 , wherein the lead includes two electrodes and the pulse generator is configured to use the two electrodes to deliver bipolar stimulation to the vagus nerve.

7. The vagus nerve stimulator of claim 1 , wherein the electrode is configured to surround the vagus nerve.

8. The vagus nerve stimulator of claim 7 , wherein the electrode includes a nerve cuff.

9. The vagus nerve stimulator of claim 1 , wherein the electrode is configured to stimulate the vagus nerve in a cervical region.

10. The vagus nerve stimulator of claim 1 , wherein the pulse generator is configured to use a predetermined schedule with schedule parameters configured to control the signal ON times and signal the OFF times.

11. A vagus nerve stimulator, comprising:

a lead with an electrode;

a pulse generator configured to cooperate with the electrode to non-selectively stimulate a vagus nerve by propagating action potentials in both afferent axons and efferent axons along the vagus nerve, including intermittently delivering a pulsed electrical signal as a train of pulses during signal ON times separated by signal OFF time when pulses are not delivered, wherein the train of pulses have a pulse frequency, and the intermittently-delivered pulsed electrical signal has a duty cycle represented as a signal ON time portion of a stimulation period;

a heart rate sensor, including at least one leadless electrode configured for use to detect heart rate; and

a controller configured to control the intermittent delivery of the pulse electrical signal using detected heart rate as feedback.

12. The vagus nerve stimulator of claim 11 , wherein the pulse generator is configured to use detected heart rate to titrate an intensity of the pulsed electrical signal.

13. The vagus nerve stimulator according to claim 11 , wherein the duty cycle comprises a value about 17%.

14. The vagus nerve stimulator of claim 13 , wherein the pulsed electric signal includes 10 seconds on and 50 seconds off to provide the 17% duty cycle.

15. The vagus nerve stimulator of claim 13 , wherein intermittently delivering a pulsed electrical signal affects heart rate during the stimulation ON time.

16. The vagus nerve stimulator of claim 11 , wherein the lead includes two electrodes and the pulse generator is configured to use the two electrodes to deliver bipolar stimulation to the vagus nerve.

17. The vagus nerve stimulator of claim 11 , wherein the electrode is configured to surround the vagus nerve.

18. The vagus nerve stimulator of claim 17 , wherein the electrode includes a nerve cuff.

19. The vagus nerve stimulator of claim 11 , wherein the electrode is configured to stimulate the vagus nerve in a cervical region.

20. The vagus nerve stimulator of claim 11 , wherein the pulse generator is configured to use a predetermined schedule with schedule parameters configured to control the signal ON times and signal the OFF times.

Continuity (8)
Continuation 14962098 · Dec 8, 2015
Continuation 14246279 · Apr 7, 2014
Continuation 13793702 · Mar 11, 2013
Continuation 13585466 · Aug 14, 2012
Continuation 13217794 · Aug 25, 2011
Continuation 12231372 · Sep 2, 2008
Provisional Application 60972154 · Sep 13, 2007
Related Publication 20170080231A1 · Mar 23, 2017