IP Library › Granted Patent US 11,071,678
Granted Patent B2
US 11,071,678 · App. 16/391,169 · Granted Jul 27, 2021

Systems and methods for exerting force on bodies

Inventor: Udaya Sankar Devanaboyina (Fremont, CA)
A61H9/0078A47C9/002A61H1/001A61H1/008A61H3/00A61H7/007A61H23/006A61H23/02A61M21/02A63B21/00181A63B69/0064A61H2003/043A61H2015/0064A61H2023/045A61H2201/0103A61H2201/0142A61H2201/0149A61H2201/0207A61H2201/0214A61H2201/1207A61H2201/1215A61H2201/1246A61H2201/1253A61H2201/164A61H2201/165A61H2201/168A61H2201/1621A61H2201/1635A61H2201/1642A61H2201/1645A61H2201/1654A61H2201/1695A61H2201/1697A61H2201/5007A61H2201/5061A61H2201/5064A61H2201/5071A61H2201/5082A61H2201/5084A61H2203/0406A61H2203/0431A61H2203/0456A61H2205/12A61H2209/00A61H2230/045A61H2230/105A61H2230/405A61H2230/805A61M2021/0022A63B21/0442A63B21/4005A63B21/4007A63B22/02
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Quick Facts
Patent No.
US 11,071,678
App. No.
16/391,169
Granted
Jul 27, 2021
Kind
B2
Abstract

Systems and methods for exerting forces on a body, including a support structure defining a space and a plurality of surface contacting units that are configured to exert force upon the body, such that the weight is distributed away from the primary weight bearing regions to non-weight bearing regions of the body, or vice versa, without exerting significant shear or frictional forces on surfaces of the body. The systems and methods may be used to exert forces to cause fluid shift in different compartments of the body. Applications include treatment of various disease conditions including pressure ulcers, heart failure, high blood pressure, preeclampsia, osteoporosis, injuries of spine and to slow microgravity-induced bone and muscle loss. The systems and methods may be used to simulate gravity, weightlessness or buoyancy, in rehabilitation medicine. The system may include a chair, bed, a wearable suit or an exoskeleton.

Claims (15)

1. A system for exerting forces on a body of a mammal, the system comprising:

a) a support structure comprising a cover anchored to a chair, the support structure defining a space at least partially surrounded by the cover and the chair when the cover is placed into a closed configuration relative to the chair, wherein the cover is configured to be pressed against the body in the closed configuration; and

b) a plurality of surface contacting units associated with the space, wherein the plurality of surface contacting units are configured to exert a gradient of forces in a direction upon a surface of the body located in the space, such that a shear force between a skin of the body and an underlying structure below the skin is similar to shear exerted on the body by water in a swimming pool;

wherein the system is configured to distribute loads away from primary weight bearing structures of the body, by exerting forces on non-weight bearing regions of the body; and

wherein the gradient forces are configured to simulate gravitational forces on the body.

2. The system of claim 1 , wherein the system is configured to apply a net force to the body in a direction of gravity so as to increase the net force or weight on the body or various parts of the body.

3. The system of claim 1 , wherein a support unit together with the plurality of surface contacting units are configured to exert force on an astronaut living in a microgravity environment or on a planet other than earth to simulate a body weight.

4. The system of claim 1 , wherein the gradient of forces are exerted on an astronaut to provide pressure or loads to simulate gravitational force on the body.

5. A system of claim 1 , wherein the system further comprises: a plurality of fluid-filled inflatable structures associated with the space, wherein the plurality of fluid-filled inflatable structures are configured to exert a net force upon the body or a body part retained in the space, and a plurality of either manual or electrical power sources are enabled to increase or decrease a pressure in the plurality of fluid-filled inflatable structures.

6. The system of claim 1 , wherein the system comprises sensors configured to sense at least one of position, acceleration, deceleration, humidity, a blood pressure, respirations, various electrical signals related to vital signs, EKG, or EEG of the body, wherein the sensors are electrically interconnected, and wherein the system comprises a computerized structure configured for detecting a presence of the body or a body part in the space, measuring a force or a pressure at a location on the body or the body part and adjusting the force or the pressure exerted on the body or the body part at the location.

7. The system of claim 1 , wherein the system is adapted to prevent or treat various disease conditions of a patient with metabolic and/or cardiovascular disorders, wherein the system is configured to exert either equal pressure at all locations or a variable pressure on the body in a gradient fashion with the forces decreasing from bottom towards head, resulting in a net upward force on the body, but with minimal shear forces on the skin and underlying tissues, and the system is configured to off-load a fraction or whole of a weight of the patient in a range from 0 to 100%, 0.00001% to 1%, 1% to 10%, 10% to 50%, 50% to 90%, or 90% to 99.9999%, onto the plurality of surface contacting units, which in turn is enabled to transfer the weight to a floor or other supporting structures, wherein the system is configured to decrease total peripheral resistance in the patient and decrease blood pressure.

8. The system of claim 7 , wherein the system is configured to shift blood and fluid from a periphery to a central pool, and increase cardiac output.

9. The system of claim 7 , wherein the system is configured to increase natriuresis, urinary output and decrease edema.

10. The system of claim 7 , wherein the system is configured to reduce a rennin-angiotensin-aldosterone system.

11. The system of claim 7 , wherein the system is configured to decrease sympathetic tone of a nervous system.

Continuity (3)
Continuation 14772359
Provisional Application 61773154 · Mar 6, 2013
Related Publication 20190247269A1 · Aug 15, 2019
Cited By (2)
US 12,447,093 US 12,576,001