Claims
- 1. An acetabular cup comprising:
a body defining a dome having an apex and an annular rim; said dome defined by an increasing radius sidewall that extends from said apex to said annular rim; said annular rim defining a plane having a center point; and wherein a radius from said center point to said annular rim has a first given length, 1 L, said center point to said apex defining a second given length, 2 L, and said second given length is less than said first given length.
- 2. The acetabular cup of claim 1, wherein said increasing radius sidewall gradually increases from said apex to said rim dome.
- 3. The acetabular cup of claim 1, wherein 0.5 mm ≦1 L -2 L ≦2.0 mm.
- 4. The acetabular cup of claim 1, wherein 1 L -2 L is approximately 1 mm.
- 5. The acetabular cup of claim 1, wherein said body comprises a titanium alloy.
- 6. The acetabular cup of claim 5, wherein said titanium alloy comprises Ti-6AI-4V.
- 7. The acetabular cup of claim 1, wherein an outside surface of said body is porous.
- 8. The acetabular cup of claim 7, wherein said porous outside surface comprises Porocoat®.
- 9. An acetabular cup comprising:
a dome-shaped shell having an apex and an annular rim; said dome-shaped shell having a sidewall defining a radius from a center point of said annular rim to said sidewall; and wherein said radius increases in length from said apex to said annular rim.
- 10. The acetabular cup of claim 9, wherein said radius gradually increases in length from said apex to said annular rim.
- 11. The acetabular cup of claim 10, wherein said radius gradually increases in length by between 0.5 mm to 1.5 mm.
- 12. The acetabular cup of claim 10, wherein said radius gradually increases in length by approximately 1.0 mm.
- 13. The acetabular cup of claim 9, wherein said shell comprises a titanium alloy.
- 14. The acetabular cup of claim 13, wherein said titanium alloy comprises Ti-6AI-4V.
- 15. The acetabular cup of claim 9, wherein an outside surface of said shell is porous.
- 16. The acetabular cup of claim 15, wherein said porous outside surface comprises Porocoat®.
- 17. A method of securing an acetabular cup to an acetabulum comprising:
reaming a cavity of a first radius of curvature into an acetabulum with a reamer, the reamer including a reamer head having the first radius of curvature; and press fitting an acetabular cup into the reamed cavity, the acetabular cup having a body defining a dome having an apex and an annular rim, said dome defined by a gradually increasing radius sidewall that extends from said apex to said annular rim, said annular rim defining a plane having a center point, and wherein a radius from said center point to said annular rim has a first given length, 1 L, said center point to said apex defining a second given length, 2 L, said second given length is less than said first given length, said first given length is greater than said first radius of curvature, and said second given length is approximately equal to said first radius of curvature.
- 18. The method of claim 17, further comprising:
inserting a liner into the acetabular cup.
- 19. The method of claim 18, wherein inserting a liner into the acetabular cup includes inserting a liner made of a polymeric material into the acetabular cup.
- 20. The method of claim 17, wherein 0.5 mm≦1 L -2 L ≦2.0 mm.
- 21. The method of claim 17, wherein 1 L -2 L is approximately 1 mm.
- 22. The method of claim 17, wherein said shell comprises a titanium alloy.
- 23. The method of claim 22, wherein said titanium alloy comprises Ti-6AI4V.
- 24. The method cup of claim 17, wherein an outside surface of said body is porous.
- 25. The acetabular cup of claim 24, wherein said porous outside surface comprises Porocoat®.
- 26. A method of securing an acetabular cup to an acetabulum comprising:
reaming a cavity of a first radius of curvature into an acetabulum with a reamer, the reamer including a reamer head having the first radius of curvature; and press fitting an acetabular cup into the reamed cavity, the acetabular cup having a dome-shaped shell having an apex and an annular rim, said dome-shaped shell having a sidewall defining a shell radius from a center point of said annular rim to said sidewall, wherein said shell radius gradually increases in length from said apex to said annular rim, and said shell radius at said annular rim is greater than said radius of curvature.
- 27. The method of claim 26, wherein said shell radius gradually increases in length by between 0.5 mm to 1.5 mm.
- 28. The method of claim 27, wherein said shell radius gradually increases in length by approximately 1.0 mm.
- 29. The method of claim 26, wherein said shell comprises a titanium alloy.
- 30. The method cup of claim 29, wherein said titanium alloy comprises Ti6AI-4V.
- 31. The method of claim 26, wherein an outside surface of said shell is porous.
Parent Case Info
[0001] This application claims the benefit of co-pending U.S. patent application Ser. No. 09/678,032 filed Oct. 3, 2000 entitled Press Fit Acetabular Cup and Associated Method For Securing the Cup to an Acetabulum
Continuation in Parts (1)
|
Number |
Date |
Country |
Parent |
09678032 |
Oct 2000 |
US |
Child |
09858411 |
May 2001 |
US |