IP Library Granted Patent US 8,670,837
Granted Patent B2
US 8,670,837 · App. 13/117,132 · Granted Mar 11, 2014

Method and means to adjust the positioning of stimulating neural and muscular electrode

Inventors: Khosrow Daneshvar (Los Angeles, CA); Samuel Arman Daneshvar (Los Angeles, CA); Chong Il Lee (Los Angeles, CA); Sergio Lara Pereira Monteiro (Los Angeles, CA)
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Quick Facts
Patent No.
US 8,670,837
App. No.
13/117,132
Granted
Mar 11, 2014
Kind
B2
Abstract

A device for electrical stimulation of the brain, heart, and other neurons and muscles, capable of modifying the electrical activity of its environment in ways that are desirable for a better life style of a patient with brain, heart, or other problems. When used for brain stimulation, the device is able to superimpose an electrical current on the natural current that happens to occur, when the natural currents cause some undesirable effect, as in Parkinson's disease. When used for heart stimulation, the device is able to superimpose an electrical current on the natural current that happens to occur, originating at the sino-atrial node, which causes a healthy heart to pump blood to the lungs and to the body. The device offers an improvement over prior art of being capable of adjusting the position of the stimulating electrodes.

Claims (16)

1. A device for electrical stimulation of animal tissues, comprising an electrical energy storage unit and controlling electronics housed in an hermetically enclosure at a first location, and an electrode at a second location which is capable of dispersing electric current in its surrounding tissues, wherein the second location comprising the electrode is located at the distal extremity of a plurality of wires connected at their proximal extremity to the electrical energy storage unit and controlling electronics at the first location; the device further comprising:

a. a screw-shaped structure at the distal extremity of the wire which is capable of being screwed into animal tissues to apply an electrical stimulation signal,

b. the screw-shaped structure having a proximal extremity and a distal extremity, an inner lumen and a surface enclosing the inner lumen,

c. the surface of the screw-shaped structure having a plurality of electrodes which are capable of being connected by wires passing from the inner lumen to the proximal extremity of the screw-shaped structure, then to the wires connecting to the electrical energy storage unit and controlling electronics at the first location, the electrodes being distributed over the surface of the screw-shaped structure in such a way that the electrodes are at several angular positions and several distances from the distal extremity on the surface of the screw-shaped structure,

d. in which the screw-shaped structure is shaped as a generally conical shape with the apex at the distal extremity, on the surface of which there are threads of progressively larger radius and on the surface of which the electrodes are located,

e. the screw-shaped structure being capable of being screwed into the animal tissue which is intended to receive the electrical stimulation, such that progressive turning of the wire connecting the screw-shaped structure to the electrical energy storage unit and controlling electronics at the first location causes that the screw-shaped structure to encase itself deeper inside the surrounding tissue, thereby allowing deeper cells in the target location to receive electrical stimulation.

2. The device of claim 1 in which the tissue intended to receive electrical stimulation is a heart.

3. The device of claim 1 in which the screw-shaped structure is capable of being screwed into the inner part of a heart.

4. The device of claim 1 in which the screw-shaped structure is shaped as a common wood screw, with a pointed distal extremity and progressively larger diameter threads at larger separation from the distal extremity, on the surface of which the electrodes are located at a plurality of positions at several distances from the distal extremity and at several angular positions around the screw-shaped structure.

5. The device of claim 1 in which the screw-shaped structure is shaped to anchor the screw-shaped structure in place preventing it to detach from its insertion position.

6. The device of claim 1 in which the controlling electronics contains a microcomputer.

7. The device of claim 6 in which the microcomputer is programmed to select a subset of the electrodes at the surface of the screw-shaped structure, wherein the selection of a subset of electrodes is chosen to produce the best result from the electrical stimulation.

8. The device of claim 1 which is capable of being screwed in/out by a surgeon to adjust the depth of the penetration of the screw-shaped structure.

9. The device of claim 1 which is capable of being screwed in/out by action at a distance by radio waves.

10. The device of claim 1 which is capable of being screwed out by a surgeon to remove the screw-shaped structure.

11. The device of claim 1 in which the controlling electronics are capable of being controlled by action at a distance by radio waves.

Continuity (3)
Provisional Application 61396334 · May 26, 2010
Provisional Application 61340920 · Mar 24, 2010
Related Publication 20120029590A1 · Feb 2, 2012