IP Library Granted Patent US 8,447,403
Granted Patent B2
US 8,447,403 · App. 13/041,098 · Granted May 21, 2013

Device and implantation system for electrical stimulation of biological systems

Inventors: Virender K. Sharma (Paradise Valley, AZ); Matthew Joseph Gani (Seattle, WA); Paul V. Goode (Cherry Hill, NJ); Bevil Hogg (Soquel, CA); Jay Miazga (Seattle, WA); Shai Policker (Tenafly, NJ); Kaila Raby (Redmond, WA)
Assignee: Endostim, Inc.
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Quick Facts
Patent No.
US 8,447,403
App. No.
13/041,098
Granted
May 21, 2013
Kind
B2
Abstract

The present specification discloses devices and methodologies for the treatment of nocturnal GERD. Individuals with nocturnal GERD may be treated by implanting a stimulation device within the patient's lower esophageal sphincter and applying electrical stimulation to the patient's lower esophageal sphincter, in accordance with certain predefined protocols. The presently disclosed devices have a simplified design because they do not require sensing systems capable of sensing when a person is engaged in a wet swallow and have improved energy storage requirements.

Claims (14)

1. A system for treating a gastrointestinal condition of a patient, comprising: (a) a pulse generator in electrical communication with at least one electrode, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient; (b) an energy storage component, wherein said pulse generator generates a pulse stream in accordance with a preset period, wherein said system comprises a non-volatile memory for storing programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period, wherein the programmatic code is not configured to modify the pulse stream based upon data from a sensor, and wherein at least one of an amplitude, frequency, or duration of said pulse stream is set such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

2. The systems of claim 1 , wherein energy delivered to the stimulator has a pulse width in a range of 1 .mu.sec to 1 second.

3. The systems of claim 1 , wherein energy delivered to the stimulator has a pulse frequency in a range of 1 Hz to 100 Hz.

4. The systems of claim 1 , wherein energy delivered to the stimulator has a pulse amplitude in a range of 1 .mu.Amp to 50 mAmp.

5. An implantable system for treating a gastrointestinal condition of a patient, comprising: (a) a passive stimulator for receiving energy from a source; (b) a pulse generator in electrical communication with said passive stimulator, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient and wherein said pulse generator generates a pulse in accordance with a preset period, wherein said system does not include an implantable energy storage component, wherein said system comprises programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period, wherein the programmatic code is not adapted to modify the pulse stream based upon data from a sensor indicative of a feeding state of the patient, and wherein an amplitude, a frequency, and a duration of said pulse stream is set such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

6. The systems of claim 1 , wherein, after cessation of stimulation, the LES has a normal physiological behavior.

7. A system for treating a gastrointestinal condition of a patient, comprising: (a) a pulse generator in electrical communication with at least one electrode, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient; (b) an energy storage component, wherein said pulse generator generates a pulse stream in accordance with a preset period, wherein said system comprises programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period, wherein the programmatic code is not configured to modify the pulse stream based upon data from a sensor indicative of a physiological state of the patient, and wherein an amplitude, a frequency, and a duration of said pulse stream are set such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

8. A system for treating a gastrointestinal condition of a patient, comprising: (a) a pulse generator in electrical communication with at least one electrode, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient; (b) an energy storage component, wherein said pulse generator generates a pulse stream in accordance with a preset period, wherein said system comprises programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period and wherein an amplitude, a frequency, and a duration of said pulse stream are defined such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

9. A system for treating a gastrointestinal condition of a patient, comprising: (a) a pulse generator in electrical communication with at least one electrode, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient; (b) an energy storage component, wherein said pulse generator generates a pulse stream for an on period and wherein said on period is between 1 second and 24 hours, wherein said system comprises programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period and wherein an amplitude, a frequency, and a duration of said pulse stream are programmed such that pressure of the LES normalizes after at least five minutes from when stimulation is initiated.

10. An implantable system for treating a gastrointestinal condition of a patient, comprising: (a) a passive stimulator for receiving energy from a source; (b) a pulse generator in communication with said passive stimulator, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient and wherein said pulse generator generates a pulse in accordance with a preset period wherein said system comprises a non-volatile memory for storing programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period, wherein the programmatic code is not adapted to modify the pulse stream based upon data from a sensor, and wherein at least one of an amplitude, frequency, or duration of said pulse stream is set such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

11. The systems of claim 5 , wherein energy delivered to the stimulator has a pulse amplitude in a range of 1 .mu.Amp to 50 mAmp.

12. An implantable system for treating a gastrointestinal condition of a patient, comprising: (a) a passive stimulator for receiving energy from a source; (b) a pulse generator in electrical communication with said passive stimulator, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient and wherein said pulse generator generates a pulse in accordance with a preset period, wherein said system comprises a non-volatile memory for storing programmatic code which, when executed by a processor, causes said pulse generator to generate the pulse stream for the preset period, wherein the programmatic code is not adapted to modify the pulse stream based upon data from a sensor, and wherein at least one of an amplitude, frequency, or duration of said pulse stream is set such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

13. An implantable system for treating a gastrointestinal condition of a patient, comprising: (a) a passive stimulator for receiving energy from a source; (b) a pulse generator in electrical communication with said passive stimulator, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient and wherein said pulse generator generates a pulse in accordance with a preset period, wherein said system comprises programmatic code which, when executed by a processor, is adapted to cause said pulse generator to generate the pulse stream for the preset period, and wherein at least one of an amplitude, frequency, or duration of said pulse stream is defined such that pressure of the LES normalizes after at least five minutes from when stimulation is initiated.

14. An implantable system for treating a gastrointestinal condition of a patient, comprising: (a) a passive stimulator for receiving energy from a source; (b) a pulse generator in electrical communication with said passive stimulator, wherein said pulse generator is adapted to be implanted proximate to or within a LES of the patient and wherein said pulse generator generates a pulse in accordance with an on period, wherein said on period is between 1 second and 24 hours, and wherein said system comprises programmatic code which, when executed by a processor, is adapted to cause said pulse generator to generate the pulse stream for the preset period, and wherein an amplitude, a frequency, and a duration of said pulse stream are defined such that functionality of the LES normalizes after at least five minutes from when stimulation is initiated.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 8, 2022
From: ENDOSTIM (ABC), LLC
To: PARAS HOLDINGS, LLC
Reel/Frame 060616/0882 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 23, 2021
From: ENDOSTIM, INC.
To: ENDOSTIM (ABC), LLC
Reel/Frame 056030/0312 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 29, 2012
From: SHARMA, VIRENDER K.; GANI, MATTHEW JOSEPH; GOODE, PAUL V.; HOGG, BEVIL; MIAZGA, JAY; POLICKER, SHAI; RABY, KAILA
To: ENDOSTIM, INC.
Reel/Frame 028283/0671 →
Continuity (9)
Provisional Application 61310755 · Mar 5, 2010
Provisional Application 61318843 · Mar 30, 2010
Provisional Application 61328702 · Apr 28, 2010
Provisional Application 61371146 · Aug 5, 2010
Provisional Application 61384105 · Sep 17, 2010
Provisional Application 61414378 · Nov 16, 2010
Provisional Application 61422967 · Dec 14, 2010
Provisional Application 61444849 · Feb 21, 2011
Related Publication 20110295335A1 · Dec 1, 2011