Resilient prosthetic and orthotic components which incorporate a plurality of sagittally oriented struts
A method of making a resilient prosthetic/orthotic component, particularly a shank for a lower extremity prosthesis in which the shank includes multiple sections which are unbounded in one or more portions of each other, and wherein the shank sections incorporate at least one voids and inserted materials between one or more shank sections to enhance shank flexibility while reducing stresses which can cause premature failure.
1. A lower extremity prosthesis comprising:
a foot keel, a monolithic, integrally formed, elongated resilient shank, and a leg attachment;
wherein the shank extends upwardly from a hind foot area of the foot keel forming an anterior facing convexly curved ankle joint area and a lower, prosthetic part of a leg above the ankle joint area by way of an anterior facing convexly curved portion;
wherein the shank has a composite structure which includes multiple compressive load bearing shank sections which are sagitally oriented and extending longitudinally in the elongated shank between upper and lower ends of the shank where the shank sections are connected together, and intermediate the upper and lower ends shank sections are unbounded in one or more portions with each other, and wherein the shank sections incorporate at least one of voids and inserted materials between one or more shank sections to enhance shank flexibility while reducing stresses which can cause premature failure.
2. The lower extremity prosthesis of claim 1 , wherein the multiple shank sections are spaced from one another in the sagittal direction intermediate upper and lower ends of the shank.
3. The lower extremity prosthesis of claim 1 , wherein the shank has a lower end which is connected to the foot keel by way of a coupling element and at least one fastener.
4. The lower extremity prosthesis of claim 3 , wherein a slot extends longitudinally through a posterior portion of the foot keel, the coupling element and a distal portion of the shank to bifurcate a portion of the prosthesis.
5. The lower extremity prosthesis of claim 1 , wherein the shank has a lower end connected directly to the foot keel by way of at least one fastener.
6. The lower extremity prosthesis of claim 1 , wherein a stop is provided on the prosthesis for limiting anterior motion of the shank.
7. The lower extremity prosthesis of claim 1 , wherein the shank has a lower end which is connected to a posterior aspect of an upwardly arched portion of the foot keel.
8. The lower extremity prosthesis of claim 1 , wherein the shank has a substantially vertically oriented upper end.
9. The lower extremity prosthesis of claim 8 , wherein the shank has a substantially horizontally oriented lower end.
10. The lower extremity prosthesis of claim 1 , wherein the radius of curvature of the anterior facing convexly curved portion of the shank increases progressively as the shank extends upwardly.
11. The lower extremity prosthesis of claim 1 , wherein the foot keel includes fore-, mid-, and hind foot portions, the fore-and hind foot portions being tapered in thickness at the ends and curved proximally, and the midfoot portion being upwardly arched, and wherein the hind foot portion incorporates at least one fastener on its posterior surface which attaches the shank.
12. The lower extremity prosthesis of claim 1 , wherein at least one of the foot keel and shank is partially bifurcated by the provision of a slot extending in the direction of the length thereof.
13. The lower extremity prosthesis of claim 1 , wherein the multiple, sagitally oriented, compressive load bearing shank sections include as the two anterior shank sections thereof shank sections each having an intermediate gap extending fully across the width of the shank section between the ends thereof.
14. The lower extremity prosthesis of claim 13 , wherein the gaps are filled with a resilient material.
15. The lower extremity prosthesis of claim 14 , wherein the resilient material is silicone rubber.