IP Library Granted Patent US 6,974,482
Granted Patent B2
US 6,974,482 · App. 10/302,069 · Granted Dec 13, 2005

Implantable orthopedic prosthesis with textured polymeric surfaces

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Quick Facts
Patent No.
US 6,974,482
App. No.
10/302,069
Granted
Dec 13, 2005
Kind
B2
Abstract

Implantable prostheses fully or partially formed of polymer having a textured or porous outer surface. The surface permits and encourages osteogenesis into the prosthesis and enables it to become firmly and permanently anchored into surrounding bone. The prostheses include a femoral hip stem formed of a metallic core and a polymeric proximal body with a textured or porous surface formed from a laser texturing, machining, or grit blasting.

Claims (36)

1. A prosthetic femoral hip stem, comprising:

a metal core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into an intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body completely surrounds the metal core between the distal end surface and the proximal end surface, the proximal body being formed entirely of polymer and having an external surface adapted to engage bone in the intramedullary canal, wherein the external surface is textured such that the external surface has a multitude of pores adapted to induce growth of cancellous and cortical bone into the external surface, and further wherein the external surface of the proximal body is configured and arranged to make direct contact with the cancellous and cortical bone without cement between the bone and the external surface of the proximal body, and still further wherein the external surface has a textured thickness from about 0.05 mm to about 5 mm.

2. The prosthetic femoral hip stem as defined in claim 1 wherein the pores have an average pore diameter from about 40 μm to about 1000 μm.

3. The prosthetic femoral hip stem as defined in claim 2 wherein the pores have a porosity ranging from about 40% to about 65%.

4. The prosthetic femoral hip stem as defined in claim 3 wherein the pores have interconnections with an average diameter of greater than about 50 microns.

5. The prosthetic femoral hip stem as defined in claim 1 wherein the pores are coated with one of plasma sprayed titanium or hydroxyapatite.

6. The prosthetic femoral hip stem as defined in claim 1 , wherein the proximal body has a series of bosses forming a grid of numerous columns and rows, and further wherein each boss has an undercut adapted to receive bone growth.

7. A femoral hip stem, comprising:

a metal core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into a intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body completely surrounds the metal core between the distal end surface and the proximal end surface, the proximal body formed of polymer with an external surface adapted to engage bone in the intramedullary canal, wherein the external surface is texturized such that the external surface has an array of pores adapted to encourage bone growth into the external surface, and further wherein the external surface of the proximal body is configured and arranged to make direct contact with the cancellous and cortical bone without cement between the bone and the external surface of the proximal body, and still further wherein at least a portion of the core, distal of said proximal body, is not covered by the proximal body.

8. The femoral hip stem as defined in claim 7 wherein the proximal body is formed of ultra high molecular weight polyethylene.

9. The femoral hip stem as defined in claim 8 wherein the proximal body has a tensile elastic modulus of less than about 940 MPa.

10. The femoral hip stem as defined in claim 8 wherein the array of pores covers substantially all of the external surface.

11. A femoral hip stem, comprising:

a core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into a intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body substantially surrounds the core between the distal end surface and the proximal end surface, the proximal body formed of polymer with an external surface adapted to engage bone in the intramedullary canal, wherein the external surface is texturized such that the external surface has an array of pores adapted to encourage bone growth into the external surface, wherein the proximal body has a series of bosses forming a grid of numerous columns and rows, and wherein each boss has an undercut adapted to receive bone growth.

12. A femoral hip stem, comprising:

a metal core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into a intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body completely surrounds the metal core between the distal end surface and the proximal end surface, the proximal body formed of polymer with an external surface adapted to engage bone in the intramedullary canal, wherein the external surface is texturized such that the external surface has an array of pores adapted to encourage bone growth into the external surface, and further wherein the external surface of the proximal body is configured and arranged to make direct contact with the cancellous and cortical bone without cement between the bone and the external surface of the proximal body,

wherein the proximal body is formed of ultra high molecular weight polyethylene;

wherein the array of pores covers substantially all of the external surface; and

wherein the external surface has a textured thickness from about 0.05 mm to about 5 mm.

13. The femoral hip stem as defined in claim 12 wherein the pores have an average pore diameter from about 40 μm to about 1000 μm.

14. The femoral hip stem as defined in claim 13 wherein the pores have a porosity ranging from about 40% to about 65%.

15. A prosthetic femoral hip stem, comprising:

a core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into an intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body completely surrounds the core between the distal end surface and the proximal end surface, the proximal body being formed entirely of polymer and having an external surface adapted to engage surrounding bone, wherein the external surface is textured; and

wherein at least a portion of the core, distal of the proximal body, is not covered by the proximal body.

16. The prosthetic femoral hip stem as defined in claim 15 , wherein the core is metal.

17. The prosthetic femoral hip stem as defined in claim 15 , wherein the external surface of the proximal body is configured and arranged to make direct contact with the surrounding bone without cement between the bone and the external surface of the proximal body.

18. The prosthetic femoral hip stem as defined in claim 15 , wherein the proximal body has a series of bosses forming a grid of numerous columns and rows, and further wherein each boss has an undercut adapted to receive bone growth.

19. A prosthetic femoral hip stem, comprising:

a metal core having an elongated body extending from a proximal portion to a distal portion, the distal portion adapted to be inserted into an intramedullary canal of a patient; and

a proximal body connected to the proximal portion, the proximal body having a distal end surface and a proximal end surface, and wherein the proximal body completely surrounds the metal core between the distal end surface and the proximal end surface, the proximal body being formed entirely of polymer and having an external surface adapted to engage bone in the intramedullary canal, wherein the external surface is textured such that the external surface has a multitude of pores adapted to induce growth of cancellous and cortical bone into the external surface, and further wherein the external surface of the proximal body is configured and arranged to make direct contact with the cancellous and cortical bone without cement between the bone and the external surface of the proximal body;

wherein at least a portion of the core, distal of said proximal body, is not covered by the proximal body.

Assignments (3)
CHANGE OF NAME Recorded Apr 10, 2006
From: ZIMMER AUSTIN, INC.
To: ZIMMER, INC.
Reel/Frame 017435/0714 →
CHANGE OF NAME Recorded May 17, 2005
From: CENTERPULSE ORTHOPEDICS INC.
To: ZIMMER AUSTIN, INC.
Reel/Frame 016263/0264 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2002
From: KHU, MENGKE
To: CENTERPULSE ORTHOPEDICS INC.
Reel/Frame 013521/0153 →