IP Library › Granted Patent US 11,432,857
Granted Patent B2
US 11,432,857 · App. 16/030,895 · Granted Sep 6, 2022

Stabilization systems

Inventors: Donald Anding (Philadelphia, PA); Andrew Davison (Downingtown, PA); James Gault (Philadelphia, PA); Alex Bada (Phoenixville, PA)
Assignee: Globus Medical, Inc.
A61B17/8057A61B17/80A61B17/809A61B17/8014A61B17/8042A61B17/8052A61B17/8085A61B17/848A61B17/8605
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Quick Facts
Patent No.
US 11,432,857
App. No.
16/030,895
Granted
Sep 6, 2022
Kind
B2
Abstract

Devices, systems, and methods of bone stabilization. The bone stabilization system includes a variety of plates, including a tine plate. The tine plate may include an elongate body and first and second ears extending from the elongate body, each of the first and second ears defining a screw hole therethrough, and a first tine extending from the first ear and a second tine extending from the second ear, the first and second tines each terminating at a sharp point.

Claims (33)

1. A bone stabilization plate comprising:

an elongate body extending from a first end to a second end along a central longitudinal axis, the elongate body defining a plurality of screw holes therethrough and a k-wire hole disposed between each of the screw holes of the elongate body, wherein the diameter of each of the k-wire holes is smaller than the diameter of each of the screw holes;

first and second ears extending laterally from the second end of the elongate body relative to the central longitudinal axis such that each ear is laterally spaced from the central longitudinal axis, each of the first and second ears defining a screw hole therethrough; and

a first tine extending from the first ear and a second tine extending from the second ear, the first and second tines each terminating at a sharp point,

a groove laterally separating the first and second ears from each other, the groove longitudinally extending on the central longitudinal axis a distance from the second end toward the first end such that the groove extends to a position which is closer to the first end than the screw holes of the ears.

2. The bone stabilization plate of claim 1 , wherein the first and second tines are bent at an angle relative to the longitudinal axis of the elongate body.

3. The bone stabilization plate of claim 1 , wherein the first and second tines are bent at 90° relative to the longitudinal axis of the elongate body.

4. The bone stabilization plate of claim 1 , wherein the groove is deeper than a radius of the screw holes in the first and second ears.

5. The bone stabilization plate of claim 1 , wherein the groove has a first width proximate the elongate body and a second width, greater than the first width, proximate the first and second tines.

6. The bone stabilization plate of claim 1 , wherein the elongate body has scalloped edges.

7. The bone stabilization plate of claim 6 , wherein narrowed portions of the scalloped edges coincide with locations of the k-wire holes.

8. The bone stabilization plate of claim 1 , wherein one or more indentations are provided where the first and second ears meet the elongate body such that a width of the plate is narrowed relative to a width of the first and second ears at the respective screw holes.

9. The bone stabilization plate of claim 1 , wherein the screw holes are selected from a group consisting of locking holes, non-locking holes, polyaxial holes, dynamic compression slots, combination locking and non-locking holes, and stacked holes.

10. A bone stabilization plate comprising:

an elongate body extending from a first end to a second end along a central longitudinal axis, the elongate body defining a plurality of screw holes therethrough and a k-wire hole disposed between each of the screw holes of the elongate body, wherein the diameter of each of the k-wire holes is smaller than the diameter of each of the screw holes;

first and second ears extending laterally away from the central longitudinal axis and from the second end of the elongate body, the first and second ears separated by a groove extending longitudinally on the central longitudinal axis; and

a first tine extending from the first ear and a second tine extending from the second ear,

wherein the groove has a first width proximate the elongate body and a second width proximate the first and second tines, the second width is greater than the first width,

wherein each of the first and second ears defining a screw hole therethrough,

wherein the groove longitudinally extends along the central longitudinal axis a distance from the second end toward the first end such that the groove extends to a position which is closer to the first end than the screw holes of the ears, and

wherein the first tine and the second tine each narrow to terminate at a sharp point.

11. The bone stabilization plate of claim 10 , wherein the first and second tines are bent at an angle relative to the longitudinal axis of the elongate body.

12. The bone stabilization plate of claim 10 , wherein the first and second tines are bent at 90° relative to the longitudinal axis of the elongate body.

13. The bone stabilization plate of claim 10 , wherein the groove is deeper than a radius of the screw holes in the first and second ears.

14. The bone stabilization plate of claim 10 , wherein the elongate body has scalloped edges.

15. The bone stabilization plate of claim 14 , wherein narrowed portions of the scalloped edges coincide with locations of the k-wire holes.

16. The bone stabilization plate of claim 10 , wherein one or more indentations are provided where the first and second ears meet the elongate body such that a width of the plate is narrowed relative to a width of the first and second ears at the respective screw holes.

17. The bone stabilization plate of claim 10 , wherein the screw holes are selected from a group consisting of locking holes, non-locking holes, polyaxial holes, dynamic compression slots, combination locking and non-locking holes, and stacked holes.

18. A bone stabilization plate comprising:

an elongate body extending from a first end to a second end along a central longitudinal axis, the elongate body defining a plurality of screw holes therethrough and a k-wire hole disposed between each of the screw holes of the elongate body, wherein the diameter of each of the k-wire holes is smaller than the diameter of each of the screw holes, the elongate body having scalloped edges with narrowed portions between the plurality of screw holes, wherein the narrowed portions of the scalloped edges coincide with locations of the k-wire holes;

first and second ears extending from the second end of the elongate body, the first and second ears being separated by a groove extending longitudinally on the central longitudinal axis, each of the first and second ears extending laterally away from the central longitudinal axis and each of the first and second ears defining a screw hole therethrough; and

a first tine extending from the first ear and a second tine extending from the second ear, the first and second tines each terminating at a sharp point, wherein the groove has a first width proximate the elongate body and a second width, greater than the first width, proximate the first and second tines,

wherein the groove longitudinally extends along the central longitudinal axis a distance from the second end toward the first end such that the groove extends to a position which is closer to the first end than the screw holes of the ears.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 17, 2018
From: ANDING, DONALD; DAVISON, ANDREW; BADA, ALEX; GAULT, JAMES
To: GLOBUS MEDICAL, INC.
Reel/Frame 046370/0808 →
Continuity (4)
Continuation In Part 15893774 · Feb 12, 2018
Continuation In Part 15405368 · Jan 13, 2017
Continuation In Part 15238772 · Aug 17, 2016
Related Publication 20180310972A1 · Nov 1, 2018