IP Library Granted Patent US 9,066,822
Granted Patent B2
US 9,066,822 · App. 13/529,833 · Granted Jun 30, 2015

Vacuum pump systems for prosthetic limbs and methods of using the same

Inventors: Ryan J. Caldwell (Long Grove, IL); Andrew H. Hansen (Apple Valley, MN); Sean M. Wood (Gardena, CA); Wei Chen (Glenview, IL); Regan A. Radcliffe (Sunnyvale, CA); Kevin A. Yngve (Evanston, IL); Bennett E. Kuhar (Concor Twp., OH); Andrew J. Nelson (Chicago, IL); Eric Nickel (Brooklyn Park, MN)
Assignee: NORTHWESTERN UNIVERSITY
A61F2/80A61F2/68A61F2002/501A61F2002/5073A61F2002/608A61F2002/689A61F2002/704A61F2002/741A61F2002/742A61F2002/7655A61F2002/802A61F2002/6809
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Quick Facts
Patent No.
US 9,066,822
App. No.
13/529,833
Granted
Jun 30, 2015
Kind
B2
Abstract

Pump systems for use in suspension of a prosthetic device from a residual limb and methods of suspending a prosthetic device from a residual limb are disclosed. The pump systems include a mechanically activated pump having a first compression member coupled to a second compression member, a compressible bladder disposed between the first and second compression members, and coupling elements that engage and couple together the first and second compression members. The mechanically activated pump may be connected with an electrically activated pump within a fluid circuit of a hybrid pump system to provide vacuum engagement between a prosthetic device and a residual limb.

Claims (28)

1. A hybrid pump system that includes a prosthetic device that is adapted for suspension from a transfemoral residual limb comprising:

a prosthetic device having a transfemoral receiving socket and a knee joint;

a mechanically activated pump having pumping action that requires a mechanical input via movement of the prosthetic device;

a separate electrically activated pump having an electrical power source and pumping action that requires an electrical input from the electrical power source;

the mechanically activated pump and electrically activated pump being connected within a fluid circuit that evacuates air from the transfemoral limb receiving socket;

wherein the mechanically activated pump is positioned between the transfemoral limb receiving socket and the knee joint;

wherein the mechanically activated pump further comprises a first compression member coupled to a second compression member and a compressible bladder disposed between the first and second compression members; and

wherein the mechanically activated pump further comprises coupling elements that engage and couple together the first and second compression members, and wherein all of the coupling elements are disposed about an outer perimeter of the compressible bladder.

2. The hybrid pump system in accordance with claim 1 , wherein the socket is configured to receive and be in direct contact with the transfemoral residual limb or in contact with a liner component that covers the transfemoral residual limb.

3. The hybrid pump system in accordance with claim 1 , wherein the electrical power source further comprises a battery.

4. The hybrid pump system in accordance with claim 3 , wherein the battery is rechargeable.

5. The hybrid pump system in accordance with claim 1 , wherein at least one spring is disposed between the first compression member and the second compression member.

6. The hybrid pump system in accordance with claim 5 , wherein the at least one spring biases the first compression member toward a position spaced apart from the second compression member.

7. The hybrid pump system in accordance with claim 1 , wherein the first compression member translates relative to the second compression member.

8. The hybrid pump system in accordance with claim 1 , wherein the electrically activated pump is disposed above or below the mechanically activated pump.

9. The hybrid pump system in accordance with claim 1 , wherein the electrically activated pump is disposed outward from the outer perimeter of the compressible bladder.

10. The hybrid pump system in accordance with claim 1 , wherein a preselected level of vacuum within the socket is maintained by operation of the mechanically activated pump.

11. The hybrid pump system in accordance with claim 1 , wherein a preselected level of vacuum within the socket is maintained by operation of the electrically activated pump.

12. The hybrid pump system in accordance with claim 1 , further comprising a controller and wherein the fluid circuit and controller are configured to evacuate air from the socket by operating the electrically activated pump when the transfemoral residual limb is initially received within the socket.

13. The hybrid pump system in accordance with claim 1 , further comprising a controller and wherein the fluid circuit and controller are configured to evacuate air from the socket by operating the electrically activated pump when the prosthetic device is not being used to walk and the air pressure within the socket is outside of a preselected range of values.

14. The hybrid pump system in accordance with claim 1 , wherein the fluid circuit is in communication with the socket and the compressible bladder of the mechanically activated pump, and the mechanically activated pump evacuates air from the socket when the prosthetic device is used to walk.

15. A hybrid pump system that includes a prosthetic device that is adapted for suspension from a transfemoral residual limb comprising:

a prosthetic device having a transfemoral receiving socket and a knee joint;

a mechanically activated pump having pumping action that requires a mechanical input via movement of the prosthetic device;

a separate electrically activated pump having an electrical power source and pumping action that requires an electrical input from the electrical power source;

the mechanically activated pump and electrically activated pump being connected within a fluid circuit that evacuates air from the transfemoral limb receiving socket;

wherein the mechanically activated pump further comprises a first compression member coupled to a second compression member and a compressible bladder disposed between the first and second compression members; and

wherein the mechanically activated pump further comprises coupling elements that engage and couple together the first and second compression members, and wherein all of the coupling elements are disposed about an outer perimeter of the compressible bladder.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2015
From: HANSEN, ANDREW H.; NICKEL, ERIC A.
To: U.S. DEPARTMENT OF VETERANS AFFAIRS
Reel/Frame 035827/0843 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 12, 2015
From: NELSON, ANDREW J.; KUHAR, BENNETT E.; RADCLIFFE, REGAN A.; YNGVE, KEVIN A.; WOOD, SEAN M.; CALDWELL, RYAN J.; CHEN, WEI
To: NORTHWESTERN UNIVERSITY
Reel/Frame 035895/0816 →
CONFIRMATORY LICENSE Recorded Jun 26, 2013
From: NORTHWESTERN UNIVERSITY
To: US ARMY, SECRETARY OF THE ARMY
Reel/Frame 030687/0310 →
Continuity (2)
Provisional Application 61571233 · Jun 23, 2011
Related Publication 20130096694A1 · Apr 18, 2013