IP Library Granted Patent US 7,601,152
Granted Patent B2
US 7,601,152 · App. 11/256,647 · Granted Oct 13, 2009

Expandable orthopedic device

Assignee: Expanding Orthopedics, Inc.
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Quick Facts
Patent No.
US 7,601,152
App. No.
11/256,647
Granted
Oct 13, 2009
Kind
B2
Abstract

A device for stabilizing bone includes a tubular body having first and second end regions defining a longitudinal axis therebetween. A plurality of splines extend from the first end region, the splines including first ends coupled to the first end region, and second ends disposed away from the first end region, the second ends being directable from a generally axial collapsed state to a substantially transverse expanded state. A plurality of support arms are coupled to the splines, and an actuator is coupled to the support arms, the actuator movable axially relative to the elongate body for causing the support arms to direct the second ends of the splines from the collapsed state to the expanded state. Optionally, the device includes another set of splines extending from the second end region or located at an intermediate region of the tubular body.

Claims (33)

1. An orthopedic device for surgical treatment of bone, comprising:

a tubular body defining a longitudinal axis;

a plurality of splines integrally formed from the tubular body between first and second regions of the tubular body, wherein the splines are substantially aligned with the longitudinal axis in a collapsed state, and movable substantially transversely outwardly relative to the longitudinal axis to define an expanded state; and

an elongate control member disposed within the tubular body, the elongate control member having a first end non-threadably coupled to the first region of the tubular body and a second end threadably coupled to an actuating element disposed within the tubular body;

wherein rotation of the actuating element in a first direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to the second region of the tubular body, thereby moving the splines from the collapsed state to define the expanded state; and

wherein rotation of the actuating element in a second direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to the second region of the tubular body, thereby moving the splines from the expanded state to the collapsed state.

2. The orthopedic device of claim 1 , wherein the elongate control member is a solid rod or a hollow tubular member.

3. The orthopedic device of claim 1 , wherein each spline of the plurality of splines is fabricated from a substantially porous interconnection structure.

4. The orthopedic device of claim 1 , wherein the first region of the tubular body comprises a collar.

5. The orthopedic device of claim 1 , wherein the splines comprise scored or thinned regions formed in the tubular body, so that the splines buckle in a predetermined manner when moved from the collapsed state to the expanded state.

6. The orthopedic device of claim 1 , wherein the actuating element comprises a collar disposed within the tubular body.

7. The orthopedic device of claim 1 , wherein the actuating element is configured to couple with a drive tool comprising a rotating head that engages the actuating element to cause rotation of the actuating element.

8. The orthopedic device of claim 7 , wherein the tool is configured to be inserted into the tubular body to engage and actuate the actuating element.

9. The orthopedic device of claim 1 , wherein respective ends of the splines define acute angles relative to the longitudinal axis of the tubular body when the splines are in their expanded state.

10. An orthopedic device for surgical treatment of bone, comprising:

a tubular body defining a longitudinal axis;

a plurality of splines integrally formed from the tubular body, wherein the splines are substantially aligned with the longitudinal axis in a collapsed state, and movable substantially transversely outwardly relative to the longitudinal axis to define an expanded state; and

an elongate control member disposed within the tubular body, the elongate control member having a distal end non-threadably coupled to a region of the tubular body distal of the splines, and a proximal end threadably coupled to an actuating element disposed within the tubular body;

wherein rotation of the actuating element in a first direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to a region of the tubular body proximal of the splines, thereby moving the splines from the collapsed state to define the expanded state; and

wherein rotation of the actuating element in a second direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to the region of the tubular body proximal of the splines, thereby moving the splines from the expanded state to the collapsed state.

11. The orthopedic device of claim 10 , wherein the elongate control member is a solid rod or a hollow tubular member.

12. The orthopedic device of claim 10 , wherein each spline of the plurality of splines is fabricated from a substantially porous interconnection structure.

13. The orthopedic device of claim 10 , wherein the splines comprise scored or thinned regions formed in the tubular body, so that the splines buckle in a predetermined manner when moved from the collapsed state to the expanded state.

14. The orthopedic device of claim 10 , wherein the actuating element is configured to couple with a drive tool comprising a rotating head that engages the actuating element to cause rotation of the actuating element.

15. The orthopedic device of claim 14 , wherein the tool is configured to be inserted into the tubular body to engage and actuate the actuating element.

16. The orthopedic device of claim 10 , wherein respective ends of the splines define acute angles relative to the longitudinal axis of the tubular body when the splines are in their expanded state.

17. An orthopedic device for surgical treatment of bone, comprising:

a tubular body defining a longitudinal axis;

a plurality of splines having respective proximal ends coupled to a distal end of the tubular body, and respective distal ends coupled to a distal support structure, wherein the splines are substantially aligned with the longitudinal axis in a collapsed state, and movable substantially transversely outwardly relative to the longitudinal axis to define an expanded state; and

an elongate control member disposed within the tubular body, the elongate control member having a first end non-threadably coupled to the distal support structure, and a second end threadably coupled to an actuating element disposed within the tubular body,

wherein rotation of the actuating element in a first direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to the tubular body, thereby moving the splines from the collapsed state to define the expanded state; and

wherein rotation of the actuating element in a second direction about the longitudinal axis causes the control member to move linearly within the tubular body relative to the tubular body, thereby moving the splines from the expanded state to the collapsed state.

18. The orthopedic device of claim 17 , wherein each spline of the plurality of splines is fabricated from a substantially porous interconnection structure.

Assignments (3)
RELEASE OF SECURITY INTEREST Recorded Apr 14, 2021
From: TWIN BROOK CAPITAL PARTNERS, LLC
To: CORELINK, LLC
Reel/Frame 055919/0235 →
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 Feb 23, 2006
From: GREENBERG, ILAN; LEVY, MARK
To: EXPANDING ORTHOPEDICS, INC
Reel/Frame 017208/0125 →
Continuity (5)
Continuation 1034921000 · Jan 21, 2003
Continuation 0990751400 · Jul 16, 2001
Continuation In Part 0942656300 · Oct 22, 1999
Provisional Application 6010559300 · Oct 26, 1998
Related Publication 20060064094A1 · Mar 23, 2006