Claims
- 1. A joint endoprosthesis, comprising:
- a) a plate-shaped prosthesis part comprising a first side and a second side, said first side having a slide surface comprised of a material which favors sliding, said slide surface having a central region associated with loading and wear; said central region having a thickness defined by the distance between said slide surface and said second side, said second side of said prosthesis part adapted to be connected to bone without any bend-resistant intermediate spacer; and
- b) a reinforcement element having tensile strength, said reinforcement element positioned principally in the lower half of said plate-shaped prosthesis and outside said central region associated with loading and wear such that said central region is surrounded without adding thickness to said central region.
- 2. The joint endoprosthesis of claim 1, wherein said reinforcement element is embedded in said prosthesis part.
- 3. The joint endoprosthesis of claim 1, wherein said reinforcement element is annular in shape.
- 4. The joint endoprosthesis of claim 1, wherein said reinforcement element is ovoid in shape.
- 5. The joint endoprosthesis of claim 1, wherein said reinforcement element is D-shaped.
- 6. The joint endoprosthesis of claim 1, wherein said material which favors sliding comprises polyethylene.
- 7. The joint endoprosthesis of claim 1, wherein said slide surface is troughed.
- 8. A joint endoprosthesis system, comprising:
- a) a plate-shaped prosthesis part comprising a tibial plateau having a first side and a second side, said first side having a slide surface comprised of a material which favors sliding, said slide surface having a central region associated with loading and wear, said central region having a thickness defined by the distance between said slide surface and said second side, said second side of said prosthesis part connected to bone; and
- b) an annular shaped reinforcement element positioned principally in the lower half of said plateau such that it closely surrounds said central region without adding thickness to said central region, said reinforcement element comprised of material having a higher modulus of elasticity than the material of said plateau and providing tensile strength in the circumferential direction, and wherein said reinforcement element comprises an outer edge and an inner edge, and wherein the thickness of said outer edge is greater than the thickness of said inner edge.
- 9. A method, comprising;
- a) providing:
- i) a subject having a knee joint, and
- ii) a joint endoprosthesis, comprising:
- a) a plate-shaped prosthesis part comprising a first side and a second side, said first side having a slide surface comprised of a material which favors sliding, said slide surface having a central region associated with loading and wear, said central region having a thickness defined by the distance between said slide surface and said second side, said second side of said prosthesis part adapted to be connected to bone, and
- b) a reinforcement element having tensile strength, said reinforcement element attached to said prosthesis part principally in the lower half of said plate-shaped prosthesis such that said central region is surrounded without adding thickness to said central region, and wherein said reinforcement element is annular in shape and comprises a wire ring embedded in said prosthesis part, and
- iii) a bone attachment means, wherein said bone attachment means comprises bone cement;
- b) positioning said endoprosthesis in said knee joint of said subject such that said plate-shaped prosthesis part serves as a tibial plateau; and
- c) securing said second side of said prosthesis part of said endoprosthesis to bone with said bone attachment means.
Priority Claims (1)
Number |
Date |
Country |
Kind |
296 15 920 U |
Sep 1996 |
DEX |
|
Parent Case Info
This application claims priority benefit of German Patent Application Serial Number 296 15 920.4 filed Sep. 12, 1996.
US Referenced Citations (11)
Foreign Referenced Citations (1)
Number |
Date |
Country |
681845 |
Nov 1995 |
EPX |