IP Library Granted Patent US 9,924,969
Granted Patent B2
US 9,924,969 · App. 14/456,407 · Granted Mar 27, 2018

External fixation

Inventors: Daniel J. Triplett (Providence, UT); Nathan Erickson (Beaver Dam, UT)
Assignee: Zimmer, Inc.
A61B17/6458A61B17/6416A61B17/6425
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Quick Facts
Patent No.
US 9,924,969
App. No.
14/456,407
Granted
Mar 27, 2018
Kind
B2
Abstract

External fixation systems, and methods for immobilizing joints or fractured bones. An external fixation system may include one or more clamp assemblies connected to one or more rod assemblies at polyaxial joints. Each rod assembly may be length adjustable, and may include a one-way locking mechanism to provisionally lock the length of the rod assembly, and additional locking mechanisms to permanently lock the length of the rod assembly. The system may be deployed pre-assembled as a unit to immobilize a joint or fracture. Another external fixation system further includes a spanning member extending transverse to the rod assemblies. Two or more external fixation systems may be deployed in a stacked configuration on one set of bone pins to immobilize two joints and/or fractures. The systems may be provided in kits including guiding instrumentation, bone pins and pin clamping assemblies for connecting the bone pins to the external fixation systems.

Claims (23)

1. A clamp assembly for external fixation of a limb, the clamp assembly comprising:

a main clamp body comprising a cruciform shape defining a first axis and a second axis perpendicular to the first axis, the cruciform shape body comprising first and second arm portions disposed along the first axis and integral with and between first and second clamps disposed along the second axis, the first and second arm portions comprising at least one hole configured to receive at least one bone pin perpendicular to the first axis and the second axis, the first and second clamps configured to connect to first and second rod assemblies, respectively;

a sliding clamp operatively connected to the first and second arm portions of the main clamp body, the sliding clamp disposed and configured to slide along the first axis between the first and second clamps to secure the at least one bone pin in the at least one hole; and

a fixation bolt coupled to one of the first and second arm portions and configured to actuate the sliding clamp.

2. The clamp assembly of claim 1 , wherein the fixation bolt extends into a side of the main clamp body and along the first axis.

3. The clamp assembly of claim 1 , wherein the at least one hole comprises two or more holes and the at least one bone pin includes two or more bone pins, and wherein the sliding clamp is configured to engage the two or more bone pins.

4. The clamp assembly of claim 1 , wherein the sliding clamp configured to move along the first axis and to secure the at least one bone pin in place is configured to secure the at least one bone pin against the main clamp body.

5. The clamp assembly of claim 1 , comprising:

at least one bushing positioned within the at least one hole, wherein the sliding clamp configured to move along the first axis and to secure the at least one bone pin in place is configured to secure the at least one bone pin against the at least one bushing.

6. The clamp assembly of claim 1 , wherein the sliding clamp defines at least one aperture, wherein the at least one aperture is defined by at least one ramp portion having a slope, and wherein the at least one ramp portion is configured to secure the at least one bone pin in place.

7. The clamp assembly of claim 6 , wherein the at least a portion of the at least one ramp portion defines a plurality of teeth to secure the at least one bone pin in place.

8. The clamp assembly of claim 1 , wherein the sliding clamp defines at least one aperture, wherein the aperture defines a set of teeth configured to secure the at least one bone pin in place.

9. The clamp assembly of claim 1 , wherein the sliding clamp defines at least one aperture, wherein the aperture defines a first set of teeth and a second set of the teeth configured to secure the at least one bone pin in place.

10. The clamp assembly of claim 1 , wherein the sliding clamp defines two apertures, and wherein the two apertures are symmetric about the first axis.

11. The clamp assembly of claim 1 , wherein the sliding clamp defines four apertures, and wherein the four apertures are symmetric about the first axis.

12. The clamp assembly of claim 1 , comprising:

a trocar assembly including:

a tissue sleeve having a first end and defining a lumen, the tissue sleeve configured to extend through the at least one hole of the main clamp body configured to receive at least one bone pin;

a first grip connected to the first end of the tissue sleeve, the first grip defining a notch;

an obturator having a first end and configured to extend through the lumen; and

a second grip connected to the first end of the obturator, the second grip defining a projection, wherein the first grip and the second grip are configured to securely engage by mating the projection and the notch.

13. The clamp assembly of claim 12 , wherein the second grip defines a first grip wing and a second grip wing.

14. The clamp assembly of claim 12 , wherein the first grip defines a first grip wing and a second grip wing, and wherein the second grip defines a third grip wing and a fourth grip wing.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 26, 2014
From: TRIPLETT, DANIEL J; ERICKSON, NATHAN
To: ZIMMER, INC.
Reel/Frame 033824/0658 →
Continuity (4)
Continuation In Part 13961729 · Aug 7, 2013
Provisional Application 61696695 · Sep 4, 2012
Provisional Application 61775239 · Mar 8, 2013
Related Publication 20140350558A1 · Nov 27, 2014