IP Library Granted Patent US 10,045,798
Granted Patent B2
US 10,045,798 · App. 14/441,862 · Granted Aug 14, 2018

Composite implant coating

Inventors: Mordechay Beyar (Caesarea, IL); Oren Globerman (Kfar-Shemaryahu, IL); Ronen Shavit (Tel-Aviv, IL)
Assignee: Carbofix Orthopedics Ltd.
A61B17/7059A61B17/72A61B17/80A61B17/8033A61B17/866A61L31/082A61L31/10A61L31/126A61L31/18A61B2017/00526A61L2420/08A61L2430/02
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Quick Facts
Patent No.
US 10,045,798
App. No.
14/441,862
Granted
Aug 14, 2018
Kind
B2
Abstract

A coating layer, for example PEEK or titanium foil, shields a bone implant surface from wearing interactions with surfaces of bone and/or other implants. The coating prevents shedding particles which are difficult to distinguish from evidence of potentially dangerous conditions, for example, microorganism contamination and/or degenerating tissue. Methods and structures for securing a coating layer are described. Other uses and implementations of coating layers are described.

Claims (40)

1. An implantable bone plate comprising:

a body of fiber-reinforced polymer composite construction; and

at least one layer configured to cover an exterior facing surface region of said body where the layer contacts bone when implanted;

wherein the layer is made of metal such that the body is shielded from wearing contacts with bone when implanted; and

wherein at least one edge region of said at least one layer is encased by material of said bone plate.

2. An implantable bone plate according to claim 1 wherein said material comprises a portion of said body.

3. An implantable bone plate according to claim 2 wherein said material comprises an extrusion of said body.

4. An implantable bone plate according to claim 3 wherein said extrusion comprises a shank and a head; the shank being attached at one end to the body, and the head being attached to the other end of the shank; the head being sized and positioned to interfere with the movement of said at least one layer relative to the body.

5. An implantable bone plate according to claim 3 , wherein said extrusion is flanged.

6. An implantable bone plate according to claim 1 , wherein said material comprises at least a portion of an at least second layer.

7. An implantable bone plate according to claim 6 wherein said at least second layer overlaps and conforms against at least a portion of said edge region.

8. An implantable bone plate according to claim 1 , wherein said material comprises a restraining strip.

9. An implantable bone plate according claim 8 wherein said restraining strip is bonded to said body.

10. An implantable bone plate according to claim 8 , wherein said edge region of said layer is held within a recess of said body, said recess being at least partially filled by said restraining strip.

11. An implantable bone plate according to claim 8 , wherein said edge region of said layer comprises a portion which is bent and within a recess of said body, said recess being at least partially filled by said restraining strip.

12. An implantable bone plate comprising:

a body of fiber-reinforced polymer composite construction; and

at least one layer configured to cover an exterior facing surface region of said body where the layer contacts bone when implanted;

wherein the layer is made of metal such that the body is shielded from wearing contacts with bone when implanted;

wherein at least a portion of said body is conformed against an edge surface of said at least one layer; and

wherein said conformed portion comprises a pin.

13. An implantable bone plate according to claim 1 , wherein at least a portion of said layer is made of titanium.

14. A method for manufacturing an implantable bone plate comprising:

forming a body of fiber-reinforced polymer composite construction,

preparing at least one metal coating layer for the bone plate, and

compression molding the bone plate together with the prepared at least one metal layer; such that

the at least one metal coating layer is restrained against the surface of said body;

wherein at least one edge region of the at least one metal coating layer is encased by material of said bone plate; and

wherein said preparing comprises positioning said metal coating layer with respect to a surface of the body shaped and positioned with respect to the body for positioning against bone so that it shields said surface from wearing contacts with bone when implanted.

15. The method of claim 14 , wherein said preparing comprises perforating said at least one coating layer.

16. An implantable bone plate according to claim 12 , wherein at least a portion of said layer is made of titanium.

17. A method for manufacturing an implantable bone plate comprising:

forming a body of fiber-reinforced polymer composite construction,

preparing at least one metal coating layer for the bone plate, and

compression molding the bone plate together with the prepared at least one metal layer; such that

the at least one metal coating layer is restrained against the surface of said body;

wherein at least a portion of said body is conformed against an edge surface of said at least one layer; and

wherein said conformed portion comprises a pin; and

wherein said preparing comprises positioning said metal coating layer with respect to a surface of the body shaped and positioned with respect to the body for positioning against bone so that it shields said surface from wearing contacts with bone when implanted.

18. The method of claim 17 , wherein said preparing comprises perforating said at least one coating layer.

Assignments (3)
CHANGE OF NAME Recorded Nov 11, 2020
From: CARBOFIX IN ORTHOPEDICS LLC
To: CARBOFIX SPINE INC.
Reel/Frame 054383/0163 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 11, 2018
From: CARBOFIX ORTHOPEDICS LTD.
To: CARBOFIX IN ORTHOPEDICS LLC
Reel/Frame 047214/0306 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 9, 2015
From: BEYAR, MORDECHAY; GLOBERMAN, OREN; SHAVIT, RONEN
To: CARBOFIX ORTHOPEDICS LTD.
Reel/Frame 035806/0072 →
Continuity (3)
Provisional Application 61841966 · Jul 2, 2013
Provisional Application 61724983 · Nov 11, 2012
Related Publication 20150289911A1 · Oct 15, 2015
Cited By (1)
US 12,678,067