IP Library Granted Patent US 8,029,506
Granted Patent B2
US 8,029,506 · App. 12/859,001 · Granted Oct 4, 2011

Bone fracture treatment devices and methods of their use

Assignee: Expanding Orthopedics Inc.
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Quick Facts
Patent No.
US 8,029,506
App. No.
12/859,001
Granted
Oct 4, 2011
Kind
B2
Abstract

A bone treatment device comprises a shaft having a tubular wall, a lumen extending within the tubular wall, openings through the tubular wall, and anchoring elements adjacent the openings that can be deployed out of the openings in the presence of an actuating force within the shaft lumen. The bone treatment device may further comprise an actuator configured to be received within the shaft lumen to deploy the anchoring elements out of the openings.

Claims (38)

1. A bone treatment device comprising:

a biocompatible shaft having a tubular wall, said tubular wall defining a shaft lumen and at least one opening through the tubular wall, the at least one opening being in communication with the shaft lumen;

at least one bone anchoring element coupled to the tubular wall adjacent the at least one opening, the at least one bone anchoring element being configured and dimensioned to be moveable between at least: (i) a first position inside the shaft lumen in the absence of an engaging actuating force within the shaft lumen; and (ii) a second position at least partially out of the at least one opening in the presence of an engaging actuating force within the shaft lumen; and

an actuator configured to be received within the shaft lumen to provide the engaging actuating force to deploy the at least one anchoring element from the first position inside the shaft lumen to the second position at least partially out of the at least one opening;

wherein the presence of the engaging actuating force within the shaft lumen prevents the at least one engaged bone anchoring element from moving to the first position inside the shaft lumen; and

wherein the actuator is axially and substantially non-rotationally moved within the shaft lumen to deploy the at least one anchoring element from the first position inside the shaft lumen to the second position at least partially out of the at least one opening;

wherein the actuator is configured to be placed within a first rotational orietation that does not deploy the at least one anchoring element when the actuator is axially moved by the at least one anchoring element, and a second rotational orientation that deploys the at least one anchoring element when the actuator is axially moved by the at least one anchoring element.

2. The device of claim 1 , wherein the tubular wall has a substantially continuous surface.

3. The device of claim 1 , wherein the tubular wall is composed of a mesh.

4. The device of claim 1 , wherein the tubular wall is rigid.

5. The device of claim 1 , wherein the at least one anchoring element and tubular wall are formed as a unibody structure.

6. The device of claim 1 , wherein the at least one opening comprises a plurality of openings axially disposed along the tubular wall, and wherein the at least one anchoring element comprises a plurality of anchoring elements coupled to the tubular wall adjacent the respective openings.

7. The device of claim 1 , wherein the at least one anchoring element has an outwardly extending tip.

8. The device of claim 1 , wherein the shapes of the at least one anchoring element and the at least one opening are geometrically similar.

9. The device of claim 1 , wherein the at least one opening is located at an end of the tubular wall.

10. The device of claim 1 , wherein the shaft is inserted into a fractured bone, and the deployment of the at least one anchoring element to the second position stabilizes the fractured bone.

11. The device of claim 1 , wherein the shaft is inserted into a bone to couple an object to the bone, the object selected from the group consisting of a joint prosthetic section, a tendon, a ligament, a plate, a flange, an adaptor, a connector, a rod, an interconnecting element, a hook, a transducer, a tooth or a bridge on the jaws, a tissue engineered material, a matrix, a scaffold, a bone graft, an allograft tissue, and a muscle.

12. The device of claim 1 , wherein the at least one anchoring element is hingedly coupled to the tubular wall, and the actuator is configured to deploy the at least one hingedly coupled anchoring element from the first position inside the shaft lumen to the second position at least partially out of the at least one opening.

13. The device of claim 1 , wherein the actuator is removable from the shaft lumen after the actuator has deployed the at least one anchoring element from the first position to the second position.

14. A bone treatment device comprising:

a biocompatible shaft having a tubular wall, wherein the tubular wall is rigid, said tubular wall defining a shaft lumen and at least one opening through the tubular wall, the at least one opening being in communication with the shaft lumen;

at least one bone anchoring element coupled to the tubular wall adjacent the at least one opening, the at least one bone anchoring element being configured and dimensioned to be plastically deformable between at least: (i) a first position inside the shaft lumen in the absence of an engaging actuating force within the shaft lumen; and (ii) a second position at least partially out of the at least one opening in the presence of an engaging actuating force within the shaft lumen; and

an actuator configured to be received within the shaft lumen to provide the engaging actuating force to plastically deform the at least one anchoring element from the first position inside the shaft lumen to the second position at least partially out of the at least one opening;

wherein the presence of the engaging actuating force within the shaft lumen prevents the at least one engaged bone anchoring element from being plastically deformed to the first position inside the shaft lumen;

wherein the actuator comprises a first member disposed within the shaft lumen, and a second member disposed within a lumen of the first member, the second member being non-threadably coupled to the first member, and

wherein the actuator is axially and substantially non-rotationally moved within the shaft lumen to plastically deform the at least one anchoring element from the first position to the second position.

15. The device of claim 14 , wherein the tubular wall has a substantially continuous surface.

16. The device of claim 14 , wherein the tubular wall is composed of a mesh.

17. The device of claim 14 , wherein the at least one anchoring element and tubular wall are formed as a unibody structure.

18. The device of claim 14 , wherein the at least one opening comprises a plurality of openings axially disposed along the tubular wall, and wherein the at least one anchoring element comprises a plurality of anchoring elements coupled to the tubular wall adjacent the respective openings.

19. The device of claim 14 , wherein the at least one anchoring element has an outwardly extending tip.

20. The device of claim 14 , wherein the shapes of the at least one anchoring element and the at least one opening are geometrically similar.

21. The device of claim 14 , wherein the at least one opening is located at an end of the tubular wall.

22. The device of claim 14 , wherein the shaft is inserted into a fractured bone, and the plastic deformation of the at least one anchoring element to the second position stabilizes the fractured bone.

23. The device of claim 14 , wherein the shaft is inserted into a bone to couple an object to the bone, the object selected from the group consisting of a joint prosthetic section, a tendon, a ligament, a plate, a flange, an adaptor, a connector, a rod, an interconnecting element, a hook, a transducer, a tooth or a bridge on the jaws, a tissue engineered material, a matrix, a scaffold, a bone graft, an allograft tissue, and a muscle.

24. The device of claim 14 , wherein the at least one anchoring element is hingedly coupled to the tubular wall, and the actuator is configured to plastically deform the at least one hingedly coupled anchoring element from the first position inside the shaft lumen to the second position at least partially out of the at least one opening.

25. The device of claim 14 , wherein the actuator is configured to be placed within a first rotational orientation that does not plastically deform the at least one anchoring element when the actuator is axially moved by the at least one anchoring element, and a second rotational orientation that plastically deforms the at least one anchoring element when the actuator is axially moved by the at least one anchoring element.

26. The device of claim 14 , wherein the actuator is removable from the shaft lumen after the actuator has deployed the at least one anchoring element from the first position to the second position.

Assignments (8)
SECURITY INTEREST Recorded Jul 22, 2024
From: CORELINK, LLC
To: VARAGON CAPITAL PARTNERS AGENT, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 068045/0638 →
SECURITY INTEREST Recorded Jun 24, 2024
From: CORELINK, LLC
To: VARAGON CAPITAL PARTNERS AGENT, LLC, AS ADMINISTRATIVE AGENT
Reel/Frame 067820/0916 →
RELEASE OF SECURITY INTEREST Recorded Jun 23, 2023
From: MIDCAP FINANCIAL TRUST
To: CORELINK, LLC
Reel/Frame 064042/0310 →
SECURITY INTEREST Recorded Apr 14, 2021
From: CORELINK, LLC
To: MIDCAP FINANCIAL TRUST
Reel/Frame 055918/0267 →
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2021
From: TWIN BROOK CAPITAL PARTNERS, LLC
To: CORELINK, LLC
Reel/Frame 055919/0235 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Apr 7, 2021
From: EXPANDING ORTHOPEDICS INC.
To: CORELINK, LLC
Reel/Frame 055853/0405 →
SECURITY INTEREST Recorded May 31, 2018
From: CORELINK, LLC
To: TWIN BROOK CAPITAL PARTNERS, LLC, AS AGENT
Reel/Frame 045951/0918 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 23, 2010
From: LEVY, MARK; GREENBERG, ILAN
To: EXPANDING ORTHOPEDICS, INC.
Reel/Frame 024869/0685 →
Continuity (3)
Continuation 11036304 · Jan 13, 2005
Provisional Application 60536918 · Jan 16, 2004
Related Publication 20100331841A1 · Dec 30, 2010