IP Library Granted Patent US 9,107,718
Granted Patent B2
US 9,107,718 · App. 13/347,410 · Granted Aug 18, 2015

Bone plate

Inventor: Bryce A. Isch (Bluffton, IN)
Assignee: Biomet Manufacturing, LLC
A61B17/8085A61B17/80A61B2017/00526Y10T156/1043
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Quick Facts
Patent No.
US 9,107,718
App. No.
13/347,410
Granted
Aug 18, 2015
Kind
B2
Abstract

A composite bone plate comprising: (a) a rigid ring that defines an internal opening and the outline of a bone plate; and, (b) a deformable material mounted to the rigid ring and at least partially spanning the internal opening, the deformable material including at least one through opening that is concurrently circumscribed by the rigid ring.

Claims (50)

1. A composite bone plate comprising:

a rigid frame that defines an internal opening and the outline of a bone plate;

a deformable material mounted to the rigid frame at least partially spanning the internal opening, and including at least one through opening that is concurrently circumscribed by the rigid frame, the at least one through opening defining a first axis for receiving a fastening device, wherein the shape of the at least one through opening is capable of being structurally deformed by the fastening device without structurally deforming the rigid frame such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the first axis; wherein

the deformable material comprises a higher volume percentage of the composite bone plate than does the rigid frame; and

the deformable material comprises a lower weight percentage of the composite bone plate than does the rigid frame.

2. A composite bone plate comprising:

a rigid frame that defines an internal opening and the outline of a bone plate;

a deformable material mounted to the rigid frame at least partially spanning the internal opening, and including at least one through opening that is concurrently circumscribed by the rigid frame, the at least one through opening defining a first axis for receiving a fastening device, wherein the shape of the at least one through opening is capable of being structurally deformed by the fastening device without structurally deforming the rigid frame such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the first axis; wherein

the rigid frame is concave on an inner circumferential surface;

the deformable material is convex on an outer circumferential surface; and

the inner circumferential surface contacts at least a portion of the outer circumferential surface.

3. A composite bone plate comprising:

a rigid frame that defines an internal opening and the outline of a bone plate;

a deformable material mounted to the rigid frame at least partially spanning the internal opening, and including at least one through opening that is concurrently circumscribed by the rigid frame, the at least one through opening defining a first axis for receiving a fastening device, wherein the shape of the at least one through opening is capable of being structurally deformed by the fastening device without structurally deforming the rigid frame such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the first axis; wherein

the deformable material is concave on an outer circumferential surface;

the rigid frame is convex on an inner circumferential surface; and

the inner circumferential surface contacts at least a portion of the outer circumferential surface.

4. A composite bone plate comprising:

a rigid frame that defines an internal opening and the outline of a bone plate; and

a deformable material including an outer circumferential surface mounted to the rigid frame by one of a compressed outer circumferential surface and an expanded rigid frame, the deformable material at least partially spanning the internal opening, and including at least one through opening that is concurrently circumscribed by the rigid frame, the at least one through opening defining a first axis for receiving a fastening device, wherein the shape of the at least one through opening is capable of being structurally deformed by the fastening device without structurally deforming the rigid frame such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the first axis, wherein the deformable material includes a plurality of through openings, at least one of the plurality of through openings having a non-uniform circular vertical cross-section.

5. A method of fabricating a bone plate comprising:

fabricating a deformable material into the shape of a bone plate, the deformable material including a plurality of through holes each defining a first axis for receiving a fastening device and each having a shape structurally deformable by the fastening device such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the first axis;

fabricating a rigid frame having an outline that tracks an outline of the deformable material, wherein the rigid frame is not deformable as one or more of the fastening devices is threaded to the bone plate; and

mounting the deformable material to the rigid frame.

6. The method of claim 5 , wherein the step of fabricating the deformable material includes shaping the deformable material into the shape of a volar bone plate.

7. The method of claim 5 , wherein the deformable material comprises polyether ether ketone.

8. The method of claim 5 , wherein the deformable material is fabricated in the shape of a volar bone plate.

9. The method of claim 5 , wherein the step of mounting the deformable material to the rigid frame includes at least one of compressing an outer circumferential surface of the deformable material and expanding an inner circumferential surface of the rigid frame.

10. A variable angle bone plate comprising:

a rigid frame; and

a deformable material including an outer circumferential surface mounted to the rigid frame by one of a compressed outer circumferential surface and an expanded rigid frame to create a bone plate, the bone plate having a plurality of holes extending though the deformable material, at least a first of the plurality of holes having a through axis that is not coaxial with a second of the plurality of through holes, wherein the bounds of the plurality of through holes have a shape that is capable of being structurally deformed by a fastening device such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the through axis without deforming the rigid frame.

11. The variable angle bone plate of claim 10 , wherein the rigid frame comprises a metal and the deformable material comprises polyether ether ketone.

12. The variable angle bone plate of claim 10 , wherein at least one of the plurality of holes has a non-uniform circular vertical cross-section.

13. A variable angle bone plate comprising:

a rigid frame;

a deformable material mounted to the rigid frame to create a bone plate, the bone plate having a plurality of holes extending though the deformable material, at least a first of the plurality of holes having a through axis that is not coaxial with a second of the plurality of through holes, wherein the bounds of the plurality of through holes have a shape that is capable of being structurally deformed by a fastening device such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the through axis without deforming the rigid frame; wherein

the deformable material comprises a higher volume percentage of the variable angle bone plate than does the rigid frame; and

the deformable material comprises a lower weight percentage of the variable angle bone plate than does the rigid frame.

14. A variable angle bone plate comprising:

a rigid frame;

a deformable material mounted to the rigid frame to create a bone plate, the bone plate having a plurality of holes extending though the deformable material, at least a first of the plurality of holes having a through axis that is not coaxial with a second of the plurality of through holes, wherein the bounds of the plurality of through holes have a shape that is capable of being structurally deformed by a fastening device such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the through axis without deforming the rigid frame; wherein

the rigid frame is concave on an inner circumferential surface;

the deformable material is convex on an outer circumferential surface; and

the inner circumferential surface contacts at least a portion of the outer circumferential surface.

15. A variable angle bone plate comprising:

a rigid frame;

a deformable material mounted to the rigid frame to create a bone plate, the bone plate having a plurality of holes extending though the deformable material, at least a first of the plurality of holes having a through axis that is not coaxial with a second of the plurality of through holes, wherein the bounds of the plurality of through holes have a shape that is capable of being structurally deformed by a fastening device such that the fastening device is capable of being lockably threaded to the bone plate at a plurality of different angular orientations off-axis from the through axis without deforming the rigid frame; wherein

the deformable material is concave on an outer circumferential surface;

the rigid frame is convex on an inner circumferential surface; and

the inner circumferential surface contacts at least a portion of the outer circumferential surface.

Assignments (2)
CHANGE OF NAME Recorded Aug 23, 2013
From: BIOMET MANUFACTURING CORPORATION
To: BIOMET MANUFACTURING, LLC
Reel/Frame 031076/0130 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 20, 2013
From: ISCH, BRYCE A.
To: BIOMET MANUFACTURING CORP.
Reel/Frame 031040/0352 →
Continuity (1)
Related Publication 20130178902A1 · Jul 11, 2013