IP Library › Granted Patent US 7,198,594
Granted Patent B2
US 7,198,594 · App. 10/244,857 · Granted Apr 3, 2007

Electrically-controllable multi-fingered resilient heart compression devices

Assignee: Environmental Robots, Inc.
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Quick Facts
Patent No.
US 7,198,594
App. No.
10/244,857
Granted
Apr 3, 2007
Kind
B2
Abstract

Soft, multi-fingered resilient robotic fingers for selectively assisting heart ventricles or other organ to produce internal pressure and to pump blood, in synchrony with the systolic contraction of the ventricle or organ, as well as providing arrhythmia control of a beating heart. The apparatus is electrically-controlled and implantable. The plurality of soft fingers monitor and gently squeeze the heart (systole) or organ to enhance blood circulation and assist the heart or organ. The soft fingers work in harmony, by means of a micro-processor controlled solenoid or other linear robotic actuators such as metal-hydride actuators or polymeric artificial muscles, and a resilient body or a spring, to close once the solenoid is powered to retract away from the heart or organ when the solenoid is not powered. Monitoring electrodes can be affixed to the soft fingers. The power supply for the implanted device can be transcutaneously rechargeable batteries.

Claims (6)

1. An implantable aorta peristaltic compression apparatus for selectively assisting blood pumping through the aorta, the apparatus comprising:

at least two fingers attached to assembly, wherein said at least two fingers comprise electroactive polymer sensors adapted to contact the aorta and to monitor pressure and electroactive polymer actuators adapted to be affixed to the aorta to provide the peristaltic compression of the aorta; and

a controller for cyclically activating and deactivating said actuators for compressing and releasing compression from the aorta, and for monitoring the pressure sensed by said sensors.

2. The invention of claim 1 wherein said electroactive polymer sensors and actuators comprises electroactive polymeric artificial muscles.

3. The invention of claim 1 wherein said controllers comprises a micro-processors to control the actuators to operate in synchrony and harmony with natural systolic and diastolic motions of the aorta.

4. The invention of claim 1 wherein said implantable aorta peristaltic compression apparatus comprises an endoscopically implantable aorta peristaltic compression apparatus.

Continuity (3)
Division 0952603800 · Mar 15, 2000
Provisional Application 6012484000 · Mar 17, 1999
Related Publication 20030032855A1 · Feb 13, 2003