IP Library Granted Patent US 8,298,293
Granted Patent B2
US 8,298,293 · App. 11/741,397 · Granted Oct 30, 2012

Prosthetic sensing systems and methods

Assignee: College Park Industries, Inc.
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Quick Facts
Patent No.
US 8,298,293
App. No.
11/741,397
Granted
Oct 30, 2012
Kind
B2
Abstract

Systems and methods are disclosed for sensing forces, moments, temperature, inclination, acceleration and other parameters associated with prosthetic limbs. The system is capable of measuring forces in three designated axes, and moments about the same designated axes, for a total of six possible degrees of freedom. The system can be readily fitted onto a conventional prosthetic limb with no, or relatively minor, modification thereto. A plurality of sensor arrays are disposed on a support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb. Electronic circuitry in communication with the gauges is operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb.

Claims (39)

1. A sensing system for use with a prosthetic limb, comprising:

a support member configured for attachment to a prosthetic limb having a longitudinal axis;

a plurality of sensor arrays disposed on the support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb;

the plurality of sensor arrays including at least one array having a sensor aligned with the axis of the support member;

electronic circuitry in communication with the gauges, the electronic circuitry being operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb;

an inclinometer and accelerometer; and

wherein the signal provided by the electronic circuitry is used to analyze the gait of a user.

2. A sensing system for use with a prosthetic limb, comprising:

a support member configured for attachment to a prosthetic limb having a longitudinal axis;

a plurality of sensor arrays disposed on the support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb;

the plurality of sensor arrays including at least one array having a sensor aligned with the axis of the support member;

electronic circuitry in communication with the gauges, the electronic circuitry being operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb;

a pair of inclinometers, one disposed on either side of an articulating joint; and

wherein the electronic circuitry is operative to receive signals from the inclinometers and output data approximating a goniometer.

3. The system of claim 2 , wherein the inclinometers are disposed on either side of an ankle joint.

4. A sensing system for use with a prosthetic limb, comprising:

a support member configured for attachment to a prosthetic limb having a longitudinal axis;

a plurality of sensor arrays disposed on the support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb;

the plurality of sensor arrays including at least one array having a sensor aligned with the axis of the support member;

electronic circuitry in communication with the gauges, the electronic circuitry being operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb;

a data collection module for receiving the signal from the electronic circuitry;

an unaffected limb electronics package (ULEP) including an inclinometer and accelerometer; and

wherein the module for collecting data is further operative to receive data from the inclinometer and accelerometer of the ULEP to analyze the gait of a user.

5. The system of claim 4 , further including:

an unaffected limb electronics package (ULEP) including a pair of inclinometers, one disposed on either side of an articulating joint; and

wherein the module for collecting data is further operative to output data approximating that of a goniometer associated with the unaffected limb.

6. A sensing system for use with a prosthetic limb, comprising:

a support member configured for attachment to a prosthetic limb having a longitudinal axis;

a plurality of sensor arrays disposed on the support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb;

the plurality of sensor arrays including at least one array having a sensor aligned with the axis of the support member;

electronic circuitry in communication with the gauges, the electronic circuitry being operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb;

wherein the electronic circuitry is powered by a generator associated with said prosthetic limb; and

the generator is a piezoelectric generator or a moving magnet generator.

7. A sensing system for use with a prosthetic limb, comprising:

a support member configured for attachment to a prosthetic limb having a longitudinal axis;

a plurality of sensor arrays disposed on the support member, each array including a plurality of strain gauge sensors, each sensor outputting an electrical signal responsive to loading imposed on the support member through the prosthetic limb;

the plurality of sensor arrays including at least one array having a sensor aligned with the axis of the support member;

electronic circuitry in communication with the gauges, the electronic circuitry being operative to receive the electrical signals from the strain gauges and provide a signal useful in the form, fit or function of the prosthetic limb; and

further including a motion detector operative to activate the electronic circuitry when motion is detected.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 10, 2024
From: COLLEGE PARK INDUSTRIES, INC.
To: RTC ELECTRONICS INC.
Reel/Frame 067376/0575 →
SECURITY INTEREST Recorded Jun 27, 2017
From: COLLEGE PARK INDUSTRIES, INC.
To: LEVEL ONE BANK
Reel/Frame 042829/0598 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 3, 2008
From: LEYDET, MICHAEL G.; LINK, MICHAEL; STREET, JOSHUA J.; HARRINGTON, RICHARD H., ON BEHALF OF SENSOR TEK LLC; FEDEL, FRANK J., ON BEHALF OF SENSOR TEK LLC
To: COLLEGE PARK INDUSTRIES, INC.
Reel/Frame 021919/0985 →
Continuity (2)
Substitution 60796301 · Apr 28, 2006
Related Publication 20070255424A1 · Nov 1, 2007