IP Library Granted Patent US 6,936,074
Granted Patent B2
US 6,936,074 · App. 10/790,177 · Granted Aug 30, 2005

Prosthetic foot

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Quick Facts
Patent No.
US 6,936,074
App. No.
10/790,177
Granted
Aug 30, 2005
Kind
B2
Abstract

A prosthetic foot is disclosed for improving the gait and comfort qualities of the amputee that participates in walking, running and jumping activities. An ankle pylon component attached to a foot keel of the foot allows hindfoot triplanar motion. An ankle joint and a subtalar joint provided in the hindfoot ankle pylon component permit closed kinetic chain motion of the foot. The ankle and subtalar joints are formed by respective struts of resilient material of a single piece of material of the ankle pylon component. The ankle pylon component can be used as a functional upgrade component to an existing low profile prosthetic foot, for example.

Claims (21)

1. A prosthetic foot comprising a forefoot portion, a midfoot portion and a hindfoot portion, said hindfoot portion including an ankle joint permitting closed kinetic chain motion of the prosthetic foot in gait, said ankle joint having a joint axis oriented for permitting motion of said hindfoot portion about said ankle joint axis which is at least primarily in the sagittal plane, said ankle joint being formed integrally with said hindfoot portion by a strut of resilient material of said hindfoot portion, wherein a hole extends through said hindfoot portion along an anterior side of said strut of said ankle joint and wherein the hindfoot portion anterior to said hole includes a gap to permit said motion of said hindfoot portion about said ankle joint axis, and wherein said joint axis as porojected on a transverse plane is 8° to 30° externally rotated with the medial side more anterior than the lateral to the long axis of the foot.

2. The prosthetic foot according to claim 1 , wherein said strut is elongated in the direction of the ankle joint axis.

3. The prosthetic foot according to claim 1 , wherein anterior and posterior side surfaces of said strut of said ankle joint are concavely curved for transferring and absorbing forces in motion of said hindfoot portion about said ankle joint axis.

4. The prosthetic foot according to claim 1 , wherein the height of said gap is selected so that a lower surface of said hindfoot portion defining said gap acts as a stop against an opposing upper surface defining said gap to limit the amount of said motion of said hindfoot portion about said ankle joint axis in dorsiflexion.

5. The prosthetic foot according to claim 1 , wherein said hole extends in a direction parallel to said joint axis of said ankle joint.

6. The prosthetic foot according to claim 1 , wherein said joint axis as projected on a sagittal plane is inclined from the transverse plane with the anterior being more proximal than the posterior.

7. The prosthetic foot according to claim 6 , wherein said joint axis as projected on a frontal plane is inclined from the transverse plane with the medial being more proximal than the lateral.

8. An ankle apparatus which can be attached to a prosthetic foot to form part of a hindfoot portion thereof, the ankle apparatus comprising an ankle joint which, when the ankle apparatus is attached to a prosthetic foot, permits closed kinetic chain motion of the prosthetic foot in gait, the ankle joint having a joint axis oriented for permitting motion of the hindfoot portion about the ankle joint axis which is at least primarly in the sagittal plane, wherein the ankle joint is formed by a strut of resilient material of the ankle apparatus, wherein a hole extends through said hindfoot portion along an anterior side of said strut of said ankle joint and wherein the hindfoot portion anterior to said hole includes a gap to permit said motion of said hindfoot portion about said ankle joint axis, and wherein said joint axis as projected on a transverse plane is 8° to 30° externally rotated with the medial side more anterior than the lateral to the long axis of the foot.

9. The ankle apparatus according to claim 8 , wherein said strut is elongated in the direction of the ankle joint axis.

10. The ankle apparatus according to claim 8 , wherein anterior and posterior side surfaces of said strut of said ankle joint are concavely curved for transferring and absorbing forces in motion of said hindfoot portion about said ankle joint axis.

11. The ankle apparatus according to claim 8 , wherein the height of said gap is selected so that a lower surface of said hindfoot portion defining said gap acts as a stop against an opposing upper surface defining said gap to limit the amount of said motion of said hindfoot portion about said ankle joint axis in dorsiflexion.

12. The ankle apparatus according to claim 8 , wherein said hole extends in a direction parallel to said joint axis of said ankle joint.

13. The ankle apparatus according to claim 8 , wherein said joint axis as projected on a sagittal plane is inclined from the transverse plane with the anterior being more proximal than the posterior.

14. The ankle apparatus according to claim 13 , wherein said joint axis as projected on a frontal plane is inclined from the transverse plane with the medial being more proximal than the lateral.

15. In a prosthetic foot comprising a foot keel extending in a longitudinal direction of the foot and a cosmetic covering about the foot keel, the improvement comprising an ankle apparatus attached to an upper surface of the foot keel to form part of a hindfoot portion of the prosthetic foot, the ankle apparatus comprising an ankle joint which permits closed kinetic chain motion of the prosthetic foot in gait, the ankle joint having a joint axis oriented for permitting motion of the hindfoot portion about the ankle joint axis which is at least primarly in the sagittal plane, wherein the ankle joint is formed by a strut of resilient material of the ankle apparatus, wherein a hole extends through said hindfoot portion along an anterior side of said strut of said ankle joint and wherein the hindfoot portion anterior to said hole includes a gap to permit said motion of said hindfoot portion about said ankle joint axis, and wherein said joint axis as projected on a transverse plane is 8° to 30° externally rotated with the medial side more anterior than the lateral to the long axis of the foot.

16. The prosthetic foot according to claim 15 , wherein said strut is elongated in the direction of the ankle joint axis.

17. The prosthetic foot according to claim 15 , wherein anterior and posterior side surfaces of said strut of said ankle joint are concavely curved for transferring and absorbing forces in motion of said hindfoot portion about said ankle joint axis.

18. The prosthetic foot according to claim 15 wherein the height of said gap is selected so that a lower surface of said hindfoot portion defining said gap acts as a stop against an opposing upper surface defining said gap to limit the amount of said motion of said hindfoot portion about said ankle joint axis in dorsiflexion.

19. The prosthetic foot according to claim 15 , wherein said hole extends in a direction parallel to said joint axis of said ankle joint.

20. The prosthetic foot according to claim 15 , wherein said joint axis as projected on a sagittal plane is inclined from the transverse plane with the anterior being more proximal than the posterior.

21. The prosthetic foot according to claim 20 , wherein said joint axis as projected on a frontal plane is inclined from the transverse plane with the medial being more proximal than the lateral.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 26, 2007
From: TOWNSEND, BARRY W.; CLAUDINO, BYRON KENT
To: BIOQUEST PROSTHETICS LLC
Reel/Frame 019147/0637 →
Continuity (3)
Continuation 0991766000 · Jul 31, 2001
Continuation In Part 0974207700 · Dec 22, 2000
Related Publication 20040199265A1 · Oct 7, 2004