Implantable muscle stimulation device for treating gastro-intestinal reflux disease
A muscle stimulation device has a control unit ( 1 ) that determines frequency and/or intensity of electrical impulses in dependence upon the degree of stomach filling. The impulses function to stimulate lower esophageal sphincter ( 11 ) by means of stimulating electrodes ( 5 a, 5 b, 5 c ) disposed radially around the sphincter ( 11 ). A computer program, executable by means of a microprocessor ( 10 ), is installed in the control unit, the program designed such that a higher stomach filling degree causes a stronger stimulation of the sphincter ( 11 ) or its substitute. The sphincter reacts to the stimulation by exerting a corresponding pressure onto a lower esophagus area ( 12 ). An increased risk of gastric reflux as a consequence of the patient's substantial food ingestion is countered by an increased stimulation of the sphincter, which in turn causes an elevated closing pressure at the lower esophagus ( 12 ). When the stomach is empty or nearly empty, the closing pressure is correspondingly reduced and the food ingestion is facilitated.
1. An implantable muscle stimulation device for treating gastro-esophageal reflux disease, the device comprising:
a) at least two implantable electrodes for stimulating a patient's sphincter or its substitute,
b) at least one implantable sensor for generating a signal indicative of the degree of the patient's stomach filling, and
c) a control unit comprising an impulse transmitter for supplying electrical impulses to the stimulating electrodes and a signal input for receiving signals from the sensor,
wherein at least one of a frequency and an intensity of the electrical impulses are controllable in dependence upon the sensor signal such that a higher degree of stomach filling causes a stronger stimulation of the sphincter and consequently a higher sphincter closing pressure.
2. The implantable device according to claim 1 , wherein the sensor is a dilation receptor.
3. The implantable device according to claim 1 , wherein the sensor comprises at least two measuring electrodes for measuring an impedance of a patient's stomach tissue.
4. The implantable device according to claim 3 , wherein the sensor comprises between three to five measuring electrodes for measuring the impedance of the stomach wall.
5. The implantable muscle stimulation device according to claim 1 , wherein the control unit comprises at least one battery.
6. The implantable device according to claim 5 , wherein the control unit comprises at least one integrated control circuit.
7. The implantable device according to claim 6 , wherein the control unit comprises at least one microprocessor.
8. The implantable device according to claim 7 , wherein the control unit further comprises a control input for controlling and/or calibrating at least one of the frequency and the itnensity of the electrical impulses by means of an external signal.
9. A implantable device according to claim 1 , comprising between three to five stimulation electrodes.
10. A storage medium having data stored therein, the data comprising executable instructions for executing the steps of:
controlling at least one of a frequency and an intensity of electrical impulses; and,
stimulating a sphincter or its substitute in dependence upon said signal from an implantable sensor, the signal indicative of a degree of patient's stomach filling
wherein a higher stomach filing degree causes a stimulation of the sphinchter or its substitute with electrical impulses having at least one of the frequency and the intensity increased in dependence upon an increasing stomach filling degree.
11. A method for treating gastro-esophageal reflux disease, said method including the steps of
receiving a signal from an implantable sensor, the signal indicative of a degree of patient's stomach filling; and,
stimulating a sphincter or its substitute in dependence upon said signal from said implantable sensor by controlling at least one of a frequency and an intensity of electrical impulses,
wherein a higher stomach filling degree causes a stimulation of the sphincter or its substitute with electrical impulses having at least one of the frequency and the intensity increased in dependence upon an increasing stomach filling degree.