IP Library Granted Patent US 12,207,849
Granted Patent B2
US 12,207,849 · App. 17/909,108 · Granted Jan 28, 2025

Set screw for femoral nail

Inventors: Lasse Harder (Schönberg, DE); André Wilke (Kiel, DE)
Assignee: Stryker European Operations Limited
A61B17/744
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Quick Facts
Patent No.
US 12,207,849
App. No.
17/909,108
Granted
Jan 28, 2025
Kind
B2
Abstract

A set screw for use in an intramedullary fracture fixation device having a longitudinal axis includes a housing and a set screw. The set screw may include a body with an external thread and an elastic member extending from the body, the elastic member having an uncompressed condition and a compressed condition. The housing may include a sidewall partially surrounding the longitudinal axis that defines a cavity for receiving the set screw such that when the set screw is at least partially disposed within the cavity and in the uncompressed condition, the set screw is secured to the housing and rotatable relative to the housing.

Claims (33)

1. A set screw assembly having a longitudinal axis for intramedullary fracture fixation devices, comprising:

a set screw including a body with an external thread and an elastic member extending from the body, the elastic member having an uncompressed condition and a compressed condition; and

a housing including a sidewall and first and second end walls extending from the sidewall in a transverse direction to the longitudinal axis, wherein the sidewall partially surrounds the longitudinal axis, and the combination of the first end wall, the second end wall, and the sidewall defines a cavity sized and configured to receive the set screw,

wherein when the elastic member is in the compressed condition, the cavity is configured to allow the set screw to be inserted into the cavity,

wherein when the set screw is inserted into the cavity and disposed within the cavity, the cavity is configured such that the elastic member is in the uncompressed condition and that the set screw is secured to the housing and rotatable about the longitudinal axis relative to the housing, and

wherein the sidewall of the housing defines an aperture and a portion of the external thread of the set screw extends through the aperture and protrudes outside of the cavity when the set screw is secured to the housing.

2. The set screw assembly of claim 1 , wherein the housing and the set screw are cannulated such that the set screw assembly is configured to receive a guide wire.

3. The set screw assembly of claim 1 , wherein the elastic member comprises a cantilever flange having a first end attached to a terminal end of the body and a second end disposed above the terminal end of the body such that a gap is formed between the second end of the cantilever flange and the terminal end of the body.

4. The set screw assembly of claim 1 , wherein when the elastic member is in the uncompressed condition, the set screw has a length in a direction along the longitudinal axis that is greater than a distance between the first and second end walls, and when the elastic member is in the compressed condition, the length of the set screw in the direction along the longitudinal axis is equal to or less than the distance between the first and second end walls.

5. The set screw assembly of claim 1 , wherein the sidewall of the housing defines a plurality of discrete apertures and a portion of the external thread of the set screw extends through each of the apertures when the set screw is secured to the housing.

6. The set screw assembly of claim 1 , wherein a lower portion of the housing comprises at least one protrusion extending distally from a distal end of the housing.

7. The set screw assembly of claim 6 , wherein the at least one protrusion comprises a medial protrusion having a first length and a lateral protrusion having a second length longer than the first length.

8. An intramedullary fracture fixation device, comprising:

an intramedullary nail having a proximal portion adjacent a proximal end, the proximal portion defining an angulated opening, and an axial bore extending through the proximal end of the intramedullary nail and into the angulated opening, the axial bore having a longitudinal axis and an internal threading;

a neck screw configured to extend through the angulated opening; and

the set screw assembly of claim 1 pre-operatively assembled within the proximal portion of the intramedullary nail, the set screw assembly being cannulated to receive a guidewire.

9. The device of claim 8 , further comprising a guidewire configured to extend into the axial bore of the intramedullary nail and through the set screw assembly.

10. An intramedullary fracture fixation device, comprising:

an intramedullary nail having a proximal portion adjacent a proximal end and a distal portion adjacent a distal end, the proximal portion defining an angulated opening, and an axial bore extending through the proximal end of the intramedullary nail and into the angulated opening, the axial bore having a longitudinal axis, an internal threading, and at least one slot extending substantially parallel to the longitudinal axis;

a neck screw configured to extend through the angulated opening and having an exterior surface with a groove; and

a set screw assembly having a longitudinal axis and configured to be disposed within the axial bore of the intramedullary nail, the set screw assembly comprising:

a set screw having a body with an external thread and an elastic member extending from the body, the elastic member having an uncompressed condition and a compressed condition; and

a housing including an upper portion and a lower portion, the upper portion including a sidewall and first and second end walls extending from the sidewall in a transverse direction to the longitudinal axis of the set screw assembly, and the combination of the first end wall, the second end wall, and the sidewall defining a cavity sized and configured to receive the set screw, wherein the sidewall partially surrounds the longitudinal axis of the set screw assembly; and

wherein when the elastic member is in the compressed condition, the cavity is configured to allow the set screw to be inserted into the cavity,

wherein when the set screw is inserted into the cavity and disposed within the cavity, the cavity is configured such that the elastic member is in the uncompressed condition and that the set screw is secured to the housing and rotatable about the longitudinal axis of the set screw assembly relative to the housing,

wherein the sidewall of the housing defines an aperture and a portion of the external thread of the set screw extends through the aperture and protrudes outside of the cavity when the set screw is secured to the housing, and

wherein when the set screw is partially disposed within the cavity of the housing and the set screw assembly is disposed within the axial bore of the intramedullary nail, the external threading of the set screw is engaged with internal threading of the axial bore such that rotation of the set screw rotates the set screw about the longitudinal axis of the set screw assembly and relative to the housing and causes the set screw assembly to move along the longitudinal axis of the axial bore of the intramedullary nail.

11. The device of claim 10 , wherein a transverse cross-section of the upper portion of the housing is a polygon with at least one vertex positioned within the at least one slot to prevent rotation of the housing relative to the intramedullary nail when the set screw is rotated.

12. The device of claim 11 , wherein the polygon comprises “n” number of vertices and wherein the at least one slot comprises a number of slots equal to “n”.

13. The device of claim 10 , wherein a transverse cross-section of the upper portion of the housing is greater than a transverse cross-section of the lower portion of the housing forming a ledge at a junction between the upper and lower portions of the housing.

14. The device of claim 13 , wherein the proximal portion of the intramedullary nail includes a seat projecting inwardly into the axial bore for contacting the ledge of the housing and limiting distal movement of the housing within the axial bore.

15. The device of claim 14 , wherein the lower portion of the housing further comprises a protrusion and wherein the lower portion of the housing includes a distal end angled with respect to the longitudinal axis of the set screw assembly such that when the ledge of the housing is in contact with the seat of the intramedullary nail only the protrusion extends into the angulated opening.

16. The device of claim 10 , wherein the set screw is sized such that insertion of the set screw into the cavity causes the elastic member to contact one of the first or second end walls and transition to the compressed condition.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2022
From: HARDER, LASSE; WILKE, ANDRÉ
To: STRYKER TRAUMA GMBH
Reel/Frame 062007/0392 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 7, 2022
From: STRYKER TRAUMA GMBH
To: STRYKER EUROPEAN OPERATIONS LIMITED
Reel/Frame 062008/0745 →
Continuity (3)
Provisional Application 63065208 · Aug 13, 2020
Provisional Application 62986138 · Mar 6, 2020
Related Publication 20230101690A1 · Mar 30, 2023
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