IP Library › Granted Patent US 10,299,834
Granted Patent B2
US 10,299,834 · App. 15/938,310 · Granted May 28, 2019

Polyaxial screw

Inventors: Andrew Iott (Newtown Square, PA); Andrew Lee (Santa Rosa, CA); Lawrence R. Binder (Miami, FL); David C. Paul (Phoenixville, PA)
Assignee: Globus Medical, Inc.
A61B17/7032A61B17/70A61B17/7002A61B17/7035A61B17/7037
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Quick Facts
Patent No.
US 10,299,834
App. No.
15/938,310
Granted
May 28, 2019
Kind
B2
Abstract

The present invention generally is directed toward a spinal fixation system whereby a coupling element allows the physician to selectively lock or unlock either the connection between the coupling element and a fastener, such as to allow for repositioning of the coupling element, or the connection between the coupling element and an elongate rod. The locking or unlocking of these connections may be made independently and as desired by the physician.

Claims (18)

1. A spinal stabilization system comprising:

a fastener member including a head portion and a shaft portion, wherein the shaft portion extends along a longitudinal axis from the head portion, wherein at least a portion of the shaft portion is tapered;

a coupling element for receiving the fastener member such that the fastener member is capable of polyaxial movement relative to the coupling element, the coupling element comprising a lower portion and an upper portion, wherein the upper portion of the coupling element includes a first extension and a second extension opposing the first extension, wherein a channel is formed between a first inner surface of the first extension and a second inner surface of the second extension for passing a rod member therethrough, wherein the first extension includes a first end and a second end and a first interior sidewall formed between the first end and the second end, wherein the second extension includes a third end and a fourth end and a second interior sidewall formed between the third end and the fourth end, wherein the first interior sidewall has a first axis that extends substantially in a direction from a top of the coupling element to a bottom of the coupling element;

a rod member received in the channel between the first and second extensions, wherein the rod member includes a proximal end and a distal end and a body between the proximal end and the distal end that is capable of being received in the channel; and

a locking cap attachable to the coupling element, wherein the locking cap is rotatable relative to the coupling element.

2. The spinal stabilization system of claim 1 , wherein the lower portion includes a clamp element, wherein the clamp element has an inner surface that clamps around an outer surface of the head portion, wherein an upper clamp portion of the clamp element has an upper end having a first arm and a second arm, wherein a second channel is formed between the first and second arms for receiving a rod member and wherein the channel of the coupling element aligns with the second channel.

3. The spinal stabilization system of claim 1 , wherein the upper portion of the locking cap includes at least one protrusion, the protrusion configured to engage one of the channels on the first end or the third end.

4. The spinal stabilization system of claim 3 , wherein the upper portion of the locking cap includes a second protrusion, the second protrusion capable of engaging the other of the channels on the first end or the third end.

5. The spinal stabilization system of claim 1 , wherein the first extension has a first exterior sidewalls and the second extension has a second exterior sidewalls, at least one of the first and second exterior sidewalls includes a tool engagement channel, a portion of the tool engagement channel in the first exterior sidewall comprises a curved portion flanked by at least one generally planar portion.

6. The spinal stabilization system of claim 5 , wherein the curved portion of the tool engagement channel comprises a semicircular portion that partially encloses a semicircular recessed area.

7. A spinal stabilization system comprising:

a fastener member including a head portion and a shaft portion, wherein the shaft portion extends along a longitudinal axis from the head portion, wherein at least a portion of the shaft portion is tapered;

a coupling element for receiving the fastener member such that the fastener member is capable of polyaxial movement relative to the coupling element, the coupling element comprising a lower portion and an upper portion, wherein the upper portion of the coupling element includes a first extension and a second extension opposing the first extension, wherein a channel is formed between a first inner surface of the first extension and a second inner surface of the second extension for passing a rod member therethrough, wherein the first extension includes a first end and a second end and a first interior sidewall formed between the first end and the second end, wherein the second extension includes a third end and a fourth end and a second interior sidewall formed between the third end and the fourth end, wherein the first interior sidewall has a first axis that extends substantially in a direction from a top of the coupling element to a bottom of the coupling element;

a rod member received in the channel between the first and second extensions, wherein the rod member includes a proximal end and a distal end and a body between the proximal end and the distal end that is capable of being received in the channel; and

a locking cap attachable to the coupling element, wherein the locking cap is rotatable relative to the coupling element.

8. The spine stabilization system of claim 7 , wherein upper portion of the locking cap includes a second protrusion, the second protrusion capable of engaging with the other channel on either the first end or the third end.

9. The spine stabilization system of claim 8 , wherein the upper protrusion, when engaged with the channels on the first and the third end prevent radial splaying of the first extension and the second extension.

10. The spine stabilization system of claim 7 , wherein the coupling element comprises a first downwardly tapering surface that extends between the lower boundary of the first extension and a bottom of the coupling element and a second downwardly tapering surface that extends between the lower boundary of the second extension and the bottom of the coupling element.

Continuity (11)
Continuation 15632602 · Jun 26, 2017
Continuation 15257959 · Sep 7, 2016
Continuation 14828562 · Aug 18, 2015
Continuation 14298514 · Jun 6, 2014
Continuation 13967075 · Aug 14, 2013
Continuation 13911801 · Jun 6, 2013
Continuation 13887098 · May 3, 2013
Continuation 11294389 · Dec 6, 2005
Continuation In Part 11146147 · Jun 7, 2005
Continuation In Part 10819994 · Apr 8, 2004
Related Publication 20180271562A1 · Sep 27, 2018