IP Library › Granted Patent US 9,700,417
Granted Patent B2
US 9,700,417 · App. 14/442,585 · Granted Jul 11, 2017

Prosthesis having a large femoral head

Inventor: Derek James Wallace McMinn (Stourbridge West Midlands, GB)
A61F2/3609A61F2/34A61F2/36A61F2002/3035A61F2002/30332A61F2002/30474A61F2002/365A61F2230/0093A61F2310/00239A61F2310/00634
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Quick Facts
Patent No.
US 9,700,417
App. No.
14/442,585
Granted
Jul 11, 2017
Kind
B2
Abstract

A prosthesis comprises a femoral stem having a frustoconical femoral neck; a femoral head having an articular bearing surface with an outer diameter of 26 mm or more, and a frustoconically tapered internal recess; and a sleeve comprising a frustoconical body for insertion into the recess of the femoral head and a frustoconically tapered internal recess for receipt of the frustoconical femoral neck. A surface of the recess of the sleeve comprises oxidized zirconium or oxidized zirconium alloy to resist or minimize mechanically assisted crevice corrosion.

Claims (24)

1. A prosthesis ( 30 ) comprising:

a femoral stem ( 32 ) having a frustoconical femoral neck ( 44 );

a femoral head ( 46 ) having an articular bearing surface ( 48 ) with an outer diameter of 26 mm or more, and a frustoconically tapered internal recess ( 52 ); and

a sleeve ( 10 ) comprising a frustoconical body ( 12 ) for insertion into the recess ( 52 ) of the femoral head ( 46 ) and a frustoconically tapered internal recess ( 14 ) for receipt of the frustoconical femoral neck ( 44 );

wherein the sleeve is uncoated and formed entirely of a metal, the metal being zirconium or a zirconium alloy with one or more additional metals.

2. The prosthesis according to claim 1 further comprising an acetabular cup ( 70 ) having a cross-linked polymer bearing surface ( 74 ).

3. The prosthesis according to claim 1 further comprising an acetabular cup ( 70 ) having a metal bearing surface.

4. The prosthesis according to claim 1 wherein the frustoconical femoral neck ( 44 ) has a central longitudinal axis which is offset with respect to a centre of the femoral head ( 46 ), when assembled thereon via the sleeve ( 10 ).

5. The prosthesis according to claim 4 wherein the sleeve ( 60 ) is asymmetrical such that the axis of rotation (A) of the sleeve recess ( 14 ) is parallel to but off-set from a central longitudinal axis (B) of the frustoconical body ( 12 ).

6. The prosthesis according to claim 4 wherein the head recess ( 52 ) has a central longitudinal axis that is offset with respect to the centre of the femoral head ( 46 ).

7. The prosthesis according to claim 1 wherein the surface ( 16 ) of the sleeve ( 10 ) recess ( 14 ) and/or the external surface of the body ( 12 ) comprises an anti-rotational element configured to resist rotational movement between the sleeve ( 10 ) and the neck ( 44 ) and/or head ( 46 ), in use.

8. The prosthesis according to claim 1 wherein the sleeve is formed entirely of zirconium.

9. The prosthesis according to claim 1 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising niobium.

10. The prosthesis according to claim 1 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising tin.

11. The prosthesis according to claim 1 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising titanium.

12. The prosthesis according to claim 1 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising hafnium.

13. The prosthesis according to claim 1 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising yttrium.

14. Use of a sleeve ( 10 ) in a prosthesis ( 30 ) comprising a femoral stem ( 32 ) and a femoral head ( 46 ) having an articular bearing surface ( 48 ) with an outer diameter of 26 mm or more; the sleeve ( 10 ) comprising a frustoconical body ( 12 ) having a frustoconically tapered internal recess ( 14 ), wherein the sleeve is uncoated and formed entirely of a metal, the metal being zirconium or a zirconium alloy with one or more additional metals.

15. The use according to claim 14 wherein the sleeve is formed entirely of zirconium.

16. The use according to claim 14 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising niobium.

17. The use according to claim 14 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising tin.

18. The use according to claim 14 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising titanium.

19. The use according to claim 14 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising hafnium.

20. The use according to claim 14 wherein the sleeve is formed entirely of the zirconium alloy with one or more additional metals, the one or more additional metals comprising yttrium.

Priority Claims (1)
EP 13275015 · Jan 25, 2013 · regional
Continuity (1)
Related Publication 20160278928A1 · Sep 29, 2016