IP Library Granted Patent US 12,369,949
Granted Patent B2
US 12,369,949 · App. 18/643,378 · Granted Jul 29, 2025

External bone fixation struts and systems

Inventor: Michael Mullaney (Naples, FL)
Assignee: ARTHREX, INC.
A61B17/62A61B17/645A61B17/6475A61B17/6408A61B17/66A61B2034/2055A61B2090/3983
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Quick Facts
Patent No.
US 12,369,949
App. No.
18/643,378
Granted
Jul 29, 2025
Kind
B2
Abstract

The present application provides external bone fixation systems. The systems include one or more pairs of bone fixation platforms in the form of rings or partial rings. The platforms may be coupled to corresponding bone segments. The pair of platforms are configured to accept a plurality of struts extending therebetween. The struts are configured to attach to the platforms via joints that provide three degrees of rotation. The struts are also configured such that their longitudinal length extending between the joints/platforms can be incrementally adjusted while attached to the platforms. The struts are further configured such that their total range of length adjustment can be increased by coupling at least one add-on component to the struts in situ. The lengths of each of the plurality of struts may be adjusted to arrange the platforms, and thereby the bone segment coupled thereto, in particular relative positions and orientations.

Claims (46)

1. A strut assembly for an external fixation system, comprising:

a strut body including an internal cavity;

a first joint connected to a first axial end portion of the strut body and configured to movably couple the strut body to a first external fixation platform;

a threaded key that provides an internal thread of the strut body;

a threaded rod assembly translatably received within the strut body and including an external thread that is configured to engage the internal thread;

a second joint connected to a second axial end portion of the threaded rod assembly and configured to movably couple the threaded rod assembly to a second external fixation platform, wherein the threaded rod assembly axially extends from within the internal cavity to the second joint; and

an outer sleeve received about the threaded key, wherein an axial length of the strut assembly that extends between the first axial end portion of the strut body and the second axial end portion of the threaded rod assembly is adjustable via rotation of the outer sleeve,

wherein the threaded key includes a first threaded key received within a first opening of the strut body and a second threaded key received within a second opening of the strut body.

2. The strut assembly as recited in claim 1 , wherein the strut body includes a radial pin received within a slot of the outer sleeve.

3. The strut assembly as recited in claim 2 , comprising a resilient member configured to axially bias the outer sleeve such that the radial pin is biased into an axially-extending indentation of the slot of the outer sleeve.

4. The strut assembly as recited in claim 1 , wherein the threaded rod assembly includes a first threaded rod and a second threaded rod that are coupled together by a connecting element, wherein the connecting element includes a first externally threaded portion configured to engage a first internal thread of the first threaded rod and a second externally threaded portion configured to engage a second internal thread of the second threaded rod, and further wherein the first externally threaded portion is configured to threadably engage and axially translate relative to the first internal thread, and the second externally threaded portion is configured to threadably engage and axially translate relative to the second internal thread.

5. The strut assembly as recited in claim 1 , wherein the first joint includes a barrel knuckle secured to a spherical projection of the strut body by a pin.

6. The strut assembly as recited in claim 1 , wherein the second joint includes a screw knuckle coupled to a spherical knuckle of the threaded rod assembly by a pin, wherein the second joint further includes a knob connected to the screw knuckle.

7. The strut assembly as recited in claim 1 , wherein the threaded rod assembly includes a cross pin adjacent the strut body, wherein the cross pin is manually engageable for applying a torque to the threaded rod assembly, wherein the cross pin is manually engageable to adjust a position of the threaded rod assembly relative to the strut body while the strut assembly is coupled to the first external fixation platform and the second external fixation platform.

8. The strut assembly as recited in claim 1 , wherein the first joint includes a dowel pin configured to be received within a groove of a stud of the first external fixation platform.

9. The strut assembly as recited in claim 1 , wherein the first threaded key provides a first portion of the internal thread, and the second threaded key provides a second portion of the internal thread.

10. The strut assembly as recited in claim 1 , wherein the outer sleeve is provided about the threaded key, the strut body, and the threaded rod assembly via an eccentric bore.

11. The strut assembly as recited in claim 10 , wherein the eccentric bore includes a camming surface that allows the first threaded key and the second threaded key to engage or disengage from the threaded rod assembly as the outer sleeve is rotated about a longitudinal axis of the strut assembly.

12. The strut assembly as recited in claim 1 , comprising a first resilient member that extends between the first threaded key and the strut body, and a second resilient member that extends between the second threaded key and the strut body.

13. A strut assembly for an external fixation system, comprising:

a strut body including an internal cavity;

a first joint connected to a first axial end portion of the strut body and configured to movably couple the strut body to a first external fixation platform;

a threaded key that provides an internal thread of the strut body;

a threaded rod assembly translatably received within the strut body and including an external thread that is configured to engage the internal thread;

a second joint connected to a second axial end portion of the threaded rod assembly and configured to movably couple the threaded rod assembly to a second external fixation platform, wherein the threaded rod assembly axially extends from within the internal cavity to the second joint; and

an outer sleeve received about the threaded key, wherein an axial length of the strut assembly that extends between the first axial end portion of the strut body and the second axial end portion of the threaded rod assembly is adjustable via rotation of the outer sleeve,

wherein the threaded rod assembly includes a first threaded rod and a second threaded rod that are coupled together by a connecting element,

wherein the connecting element includes a first externally threaded portion configured to engage a first internal thread of the first threaded rod and a second externally threaded portion configured to engage a second internal thread of the second threaded rod,

wherein the first externally threaded portion include threads of a first pitch and the second externally threaded portion includes threads of a second pitch that is different than the first pitch.

14. The strut assembly as recited in claim 13 , wherein the first pitch is a fine thread pitch and the second pitch is a coarse thread pitch.

15. An external fixation system, comprising:

a first platform;

a second platform; and

a length-adjustable strut coupled between the first platform and the second platform, wherein the length-adjustable strut comprises:

a strut body including an internal cavity;

a first joint connected to a first axial end portion of the strut body and configured to movably couple the strut body to the first platform;

a threaded key that provides an internal thread of the strut body;

a threaded rod assembly translatably received within the strut body and including an external thread that is configured to engage the internal thread;

a second joint connected to a second axial end portion of the threaded rod assembly and configured to movably couple the threaded rod assembly to the second platform, wherein the threaded rod assembly axially extends from within the internal cavity to the second joint; and

an outer sleeve received about the threaded key, wherein an axial length of the length-adjustable strut that extends between the first axial end portion of the strut body and the second axial end portion of the threaded rod assembly is adjustable via rotation of the outer sleeve,

wherein the threaded key includes a first threaded key received within a first opening of the strut body and a second threaded key received within a second opening of the strut body.

16. The external fixation system as recited in claim 15 , wherein the threaded rod assembly includes a first threaded rod and a second threaded rod that are coupled together by a connecting element.

17. The external fixation system as recited in claim 16 , wherein the connecting element includes a first externally threaded portion configured to engage a first internally threaded opening of the first threaded rod and a second externally threaded portion configured to engage a second internally threaded opening of the second threaded rod.

18. The external fixation system as recited in claim 17 , wherein the first externally threaded portion is configured to threadably engage and axially translate relative to the first internally threaded opening, and the second externally threaded portion is configured to threadably engage and axially translate relative to the second internally threaded opening.

19. The external fixation system as recited in claim 17 , wherein the first externally threaded portion include threads of a first pitch and the second externally threaded portion includes threads of a second pitch that is different than the first pitch.

20. The external fixation system as recited in claim 16 , wherein the length-adjustable strut is coupled to a plurality of additional length-adjustable struts to form a singular construct prior to coupling the singular construct to the first platform and the second platform.

Continuity (7)
Continuation 17807762 · Jun 20, 2022
Continuation 17247289 · Dec 7, 2020
Continuation 16059733 · Aug 9, 2018
Continuation PCTUS2017017276 · Feb 10, 2017
Provisional Application 62415741 · Nov 1, 2016
Provisional Application 62362351 · Jul 14, 2016
Related Publication 20240268864A1 · Aug 15, 2024
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