IP Library Granted Patent US 8,460,343
Granted Patent B2
US 8,460,343 · App. 12/571,502 · Granted Jun 11, 2013

Intramedullary tubular bone fixation

Inventor: Thomas J. Graham (Baltimore, MD)
Assignee: The Cleveland Clinic Foundation
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Quick Facts
Patent No.
US 8,460,343
App. No.
12/571,502
Granted
Jun 11, 2013
Kind
B2
Abstract

An intramedullary bone fixation device suitable for treatment of fractures of the tubular bones of the hand or feet. The implantable device can be used singly or introduced through both the radial and ulnar aspects. The device includes a stem having a tip portion at one end and a base member at the opposite end of the stem. The stem and tip portions are configured with a unique configuration and cross section to facilitate insertion into and through the canal and provide the necessary forces on the stem portion within the canal. The base is sized and configured to minimize tissue damage while as the same time providing a strong point of fixation.

Claims (28)

1. An implant for bone fracture fixation comprising: a base member including a fastener receiving passageway extending between a top and bottom surface of said base member; and a stem member being free of passageways and extending longitudinally from said base member, said stem member having a first end adjacent the base member and a second end at the opposite end thereof forming a tip of said stem, said stem having a concavo-convex profile including first, second and third arcuate portions, whereby the concavo-convex profile is adapted to result in a three point bending relationship within a canal of said bone; wherein the first arcuate portion extends downward from the base member to a first location on the body of the stem member longitudinally spaced from the base member, the first arcuate portion extending upward from the first location and terminating at a second location on the body of the stem member that is longitudinally spaced from the base member.

2. The implant according to clam 1 , wherein:

the first arcuate portion of said stem extends from a point adjacent to said base member and terminates while transitioning into a second arcuate portion, said second arcuate portion being curved in a direction diametrically opposed to said first arcuate portion, said second arcuate portion terminates while transitioning into a third arcuate portion, said third arcuate portion being curved in a direction diametrically opposite to said second arcuate portion and similar to the first arcuate portion, said third arcuate portion terminating at said tip.

3. The implant according to claim 2 , wherein said stem has a cross section including a width and thickness, the width of said stem decreasing in size from the point adjacent the base to the tip of said stem.

4. The implant according to claim 3 , wherein said stem is connected to said base by a joint.

5. The implant according to claim 4 , wherein said stem has a pentagonal cross section.

6. The implant according to claim 4 , wherein said stem has a rectangular cross section.

7. The implant according to claim 3 , wherein said stem is formed as a unitary member with said base and a curved bend forms a transition between said base and said stem.

8. The implant according to claim 7 , wherein said stem has a pentagonal cross section.

9. The implant according to claim 7 , wherein said stem has a rectangular cross section.

10. The implant according to claim 1 , wherein each of the first, second, and third arcuate portions is substantially curved along each of their entire lengths.

11. An implant for bone fracture fixation comprising:

a base member including a fastener receiving passageway extending between a top and bottom surface of the base member; and

a stem member extending longitudinally from the base member, the stem member having a first end adjacent the base member and a second end at the opposite end thereof forming a tip of the stem, the stem having a concavo-convex profile including first, second and third arcuate portions, whereby the concavo-convex profile is adapted to result in a three point bending relationship within a canal of a bone, each of the first, second, and third arcuate portions being substantially curved in the longitudinal direction along each of their entire lengths.

12. The implant according to clam 11 , wherein the first arcuate portion of the stem extends from a point adjacent to the base member and terminates while transitioning into a second arcuate portion, the second arcuate portion being curved in a direction diametrically opposed to the first arcuate portion, the second arcuate portion terminates while transitioning into a third arcuate portion, the third arcuate portion being curved in a direction diametrically opposite to the second arcuate portion and similar to the first arcuate portion, the third arcuate portion terminating at the tip.

13. The implant according to claim 12 , wherein the stem has a cross section including a width and thickness, the width of the stem decreasing in size from the point adjacent the base to the tip of the stem.

14. The implant according to claim 13 , wherein the stem is connected to the base by a joint.

15. The implant according to claim 14 , wherein the stem has one of a pentagonal and rectangular cross section.

16. The implant according to claim 13 , wherein the stem is formed as a unitary member with the base and a curved bend forms a transition between the base and the stem.

17. The implant according to claim 11 , wherein the stem is free of passageways.

18. The implant according to claim 11 , wherein the first arcuate portion extends downward from the base member to a first location on the body of the stem member longitudinally spaced from the base member, the first arcuate portion extending upward from the first location and terminating at a second location on the body of the stem member that is longitudinally spaced from the base member.

19. An implant for bone fracture fixation comprising:

a substantially planar base member including a single fastener receiving passageway extending between a top and bottom surface of the base member; and

a stem member extending longitudinally from the base member, the stem member having a generally uniform, contiguous body, the stem member having a first end adjacent the base member and a second end at the opposite end thereof forming a tip of the stem member, the stem member having a concavo-convex profile including:

a first arcuate portion extending downward from the base member to a first location on the body of the stem member longitudinally spaced from the base member, the first arcuate portion extending upward from the first location and terminating at a second location on the body of the stem member that is longitudinally spaced from the base member;

a second arcuate portion extending downward from the second location on the body of the stem member and terminating at a third location on the body of the stem member longitudinally spaced from the base member, the second arcuate portion being curved in a direction diametrically opposed to the first arcuate portion; and

a third arcuate portion extending upward from the third location on the body of the stem member and terminating at the tip of the stem member, the third arcuate portion being curved in a direction diametrically opposite to the second arcuate portion and similar to the first arcuate portion,

the first location on the body of the stem member being spaced at a greater longitudinal distance from the base member than the third location on the body of the stem member, the third location on the body of the stem member being spaced at a greater longitudinal distance from the base member than the second location on the body of the stem member.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 16, 2010
From: UPEX, LLC
To: UPEX HOLDINGS, LLC
Reel/Frame 024088/0530 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Oct 1, 2009
From: GRAHAM, M.D., THOMAS J.
To: UPEX, LLC
Reel/Frame 023311/0530 →
Continuity (2)
Provisional Application 61101890 · Oct 1, 2008
Related Publication 20100082068A1 · Apr 1, 2010