IP Library › Granted Patent US 12,740,816
Granted Patent B2
US 12,740,816 · App. 18/686,407 · Granted Sep 22, 2026

Active compression bone screw

Inventors: Colin S. Gregersen (Salt Lake City, UT); T. Wade Fallin (Hyde Park, UT); Charles L. Saltzman (Salt Lake City, UT)
Assignee: University of Utah Research Foundation
A61B17/864A61B17/866A61B2017/00862
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Quick Facts
Patent No.
US 12,740,816
App. No.
18/686,407
Granted
Sep 22, 2026
Kind
B2
Abstract

A bone screw may be insertable into a bone, and may have a proximal member, a distal member with bone-engaging threads, wherein the distal member is configured to slidably engage the proximal member such that a variable-length cavity is defined within the proximal member and the distal member, and a tension member residing at least partially within the variable-length cavity. The tension member may have a proximal end coupled to the proximal member and a distal end coupled to the distal member such that, in response to motion of the distal member away from the proximal member, the tension member elongates and urges the distal member to move toward the proximal member. The proximal member and the distal member may be interconnected to share bending loads at a bending transmission feature.

Claims (64)

1 . A bone screw insertable into a bone, the bone screw comprising:

a proximal member;

a distal member comprising bone-engaging threads, wherein the distal member is configured to slidably engage the proximal member such that a variable-length cavity is defined within the proximal member and the distal member; and

a tension member residing at least partially within the variable-length cavity, the tension member comprising:

a proximal end coupled to the proximal member; and

a distal end coupled to the distal member such that, in response to motion of the distal member away from the proximal member, the tension member elongates and urges the distal member to move toward the proximal member;

wherein at least one of the proximal member and the distal member comprises a bending transmission feature, displaced either proximally or distally from a torque transmission feature that transmits torque from the proximal member to the distal member while permitting slidable engagement of the distal member relative to the proximal member, wherein the proximal member and the distal member are interconnected to share bending loads at the bending transmission feature.

2 . The bone screw of claim 1 , wherein the torque transmission feature has torque transmitting surfaces that are oriented closer to a radial direction than a to a circumferential direction, as to a cross section perpendicular to a longitudinal axis of the bone screw.

3 . The bone screw of claim 1 , wherein a proximal portion of the distal member, proximal to the bone-engaging threads, comprises an exterior diameter larger than a minor diameter of the bone-engaging threads.

4 . The bone screw of claim 1 , wherein:

the proximal member comprises a proximal member stop feature;

the distal member comprises a distal member distal stop feature configured to abut the proximal member stop feature to prevent further elongation of the tension member when the tension member is at a maximum length;

the tension member is at least partially formed of a superelastic material; and

the maximum length is selected such that a superelastic strain level of the superelastic material is not exceeded.

5 . The bone screw of claim 1 , wherein the distal end comprises a distal member coupling interface that can be inserted through a second proximal end of the distal member and then coupled to the distal member from within the variable-length cavity.

6 . The bone screw of claim 1 , wherein the proximal member and the distal member cooperate to define a weakest cross section, as to bending stress, that is distal to a center of the bone screw.

7 . The bone screw of claim 6 , wherein the weakest cross section is positioned directly proximal to the bone-engaging threads.

8 . The bone screw of claim 1 , wherein:

the proximal member comprises a proximal interior surface that defines a proximal portion of the variable-length cavity;

the distal member comprises an extension extending proximally of the torque transmission feature, within the proximal portion; and

the extension comprises the bending transmission feature, the bending transmission feature comprising an engagement surface that presses against the proximal interior surface in response to bending load applied between the proximal member and the distal member.

9 . The bone screw of claim 8 , wherein:

the proximal member comprises:

a proximal shank; and

a head that is wider than the proximal shank; and

the engagement surface is closer to the head than to the torque transmission feature.

10 . The bone screw of claim 9 , wherein:

the extension comprises:

a second distal end having the engagement surface; and

a relief, distal to the engagement surface, having an outside diameter smaller than the engagement surface;

the proximal interior surface comprises a protrusion that protrudes toward a longitudinal axis of the bone screw and into the relief;

the protrusion acts as a proximal member motion stop feature; and

the relief defines a shoulder that acts as a distal member motion stop feature configured to abut the proximal member motion stop feature to prevent further elongation of the tension member when the tension member is at a maximum length.

11 . A bone screw insertable into a bone, the bone screw comprising:

a proximal member;

a distal member comprising bone-engaging threads, wherein the distal member is configured to slidably engage the proximal member such that a variable-length cavity is defined within the proximal member and the distal member; and

a tension member residing at least partially within the variable-length cavity, the tension member comprising:

a first proximal end coupled to the proximal member; and

a distal end coupled to the distal member such that, in response to motion of the distal member away from the proximal member, the tension member elongates and urges the distal member to move toward the proximal member;

wherein:

the distal end comprises a distal member coupling interface that can be inserted through an opening in a second proximal end of the distal member and then coupled to the distal member from within the variable-length cavity;

the opening is larger than the distal member coupling interface;

the distal member comprises a distal interior surface that defines a distal portion of the variable-length cavity;

the distal interior surface defines interior threading;

the distal member coupling interface comprises exterior threading engageable with the interior threading; and

the first proximal end comprises a drive feature configured to facilitate rotation of the tension member to allow the exterior threading to engage with the interior threading.

12 . The bone screw of claim 11 , wherein:

the first proximal end of the tension member comprises an enlargement;

the proximal member comprises:

a proximal shank;

a head that is wider than the proximal shank;

a proximal interior surface that defines a proximal portion of the variable-length cavity; and

a proximal aperture that provides access to the proximal portion of the variable-length cavity through the head;

the proximal aperture is sized to permit passage of the distal end of the tension member therethrough; and

the proximal aperture defines a shoulder on which the enlargement rests upon coupling of the distal member coupling interface to the distal member.

13 . The bone screw of claim 11 , wherein:

the proximal member comprises:

a proximal shank;

a head that is wider than the proximal shank;

a proximal interior surface that defines a proximal portion of the variable-length cavity; and

a proximal aperture that provides access to the proximal portion of the variable-length cavity through the head;

the distal member comprises:

a distal aperture that provides access to the distal portion of the variable-length cavity; and

the proximal aperture and the distal aperture are sized to permit passage of a K-wire therethrough.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2024
From: GREGERSEN, COLIN S.; FALLIN, T. WADE; SALTZMAN, CHARLES L.
To: UNIVERSITY OF UTAH
Reel/Frame 066627/0587 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 2, 2024
From: UNIVERSITY OF UTAH
To: UNIVERSITY OF UTAH RESEARCH FOUNDATION
Reel/Frame 066627/0591 →
Continuity (3)
Continuation 17735854 · May 3, 2022
Continuation 17412689 · Aug 26, 2021
Related Publication 20240382242A1 · Nov 21, 2024
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