IP Library Granted Patent US 10,485,595
Granted Patent B2
US 10,485,595 · App. 15/197,879 · Granted Nov 26, 2019

Flexible bone screw

Inventors: T. Wade Fallin (Hyde Park, UT); M. Mary Sinnott (Logan, UT); Robert W. Hoy (Essex Junction, VT)
Assignee: IntraFuse, LLC
A61B17/863A61B17/8645A61B2017/00946A61B2017/8655
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Quick Facts
Patent No.
US 10,485,595
App. No.
15/197,879
Granted
Nov 26, 2019
Kind
B2
Abstract

There is disclosed a device and method for stabilizing a bone. The device includes a flexible threaded portion operable to thread along a curved path in a bone.

Claims (35)

1. A plurality of headless bone screws comprising:

a first bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a helical distal thread formed thereon, the distal thread having a minor diameter, a pitch and a major diameter; and

a second bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a helical distal thread formed thereon, the distal thread having a minor diameter, a pitch and a major diameter; the second bone screw distal thread minor diameter being equal to the first bone screw distal thread minor diameter, the second bone screw distal thread pitch being equal to the first bone screw distal thread pitch, and the second bone screw distal thread major diameter being greater than the first bone screw distal thread major diameter;

wherein the headless proximal portion of each of the first bone screw and the second bone screw comprises a cylindrical exterior surface that is smooth and unthreaded for an entire length of the headless proximal portion;

wherein the helical distal thread of each screw is operable to bend as it is threaded into a bone to follow a curved path in the bone.

2. The plurality of bone screws of claim 1 further comprising:

a third bone screw comprising an elongate body having a distal portion and a proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a helical distal thread formed thereon, the distal thread having a minor diameter, a pitch and a major diameter; the third bone screw distal thread minor diameter being equal to the second bone screw distal thread minor diameter, the third bone screw distal thread pitch being equal to the second bone screw distal thread pitch, and the third bone screw distal thread major diameter being greater than the second bone screw distal thread major diameter.

3. The plurality of bone screws of claim 1 wherein the first bone screw proximal portion has a diameter and the second bone screw proximal portion has a diameter, the second bone screw proximal portion diameter being greater than the first bone screw proximal portion diameter.

4. The plurality of bone screws of claim 1 wherein the proximal portion includes a transverse through bore through the proximal portion from a first opening on an outer surface of the proximal portion to a second opening on the outer surface of the proximal portion.

5. The plurality of bone screws of claim 1 , wherein, for each of the first and second bone screws:

the elongate body has a length;

the headless proximal portion has a proximal diameter greater than or equal to the major diameter and is unthreaded for at least 25% of the length;

the helical distal thread extends along at least 25% of the length; and

the elongate body comprises a middle portion comprising a taper at which a middle diameter of the middle portion diminishes, distally, from the proximal diameter to the minor diameter.

6. A plurality of headless bone screws comprising:

a first bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a continuous helical distal thread formed thereon, the distal thread having a minor diameter, a pitch and a major diameter; and

a second bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a continuous helical distal thread formed thereon, the distal thread having a minor diameter, a pitch and a major diameter; the second bone screw distal thread minor diameter being equal to the first bone screw distal thread minor diameter, the second bone screw distal thread pitch being equal to the first bone screw distal thread pitch, and the second bone screw distal thread major diameter being greater than the first bone screw distal thread major diameter;

wherein the helical distal thread of each screw is operable to bend as it is threaded into a bone to follow a curved path in the bone.

7. The plurality of bone screws of claim 6 wherein the first bone screw proximal portion has a diameter and the second bone screw proximal portion has a diameter, the second bone screw proximal portion diameter being greater than the first bone screw proximal portion diameter.

8. The plurality of bone screws of claim 6 wherein each screw further comprises a helical proximal thread formed on the proximal portion.

9. The plurality of bone screws of claim 8 wherein the distal thread of each screw has a distal thread pitch and the proximal thread of each screw has a proximal thread pitch, the proximal thread pitch of each screw being equal to the distal thread pitch of the same screw.

10. The plurality of bone screws of claim 8 wherein the proximal thread of each screw has a major diameter and a minor diameter and a mid-portion of each screw, between the distal thread and the proximal thread, has an outer diameter, the proximal thread minor diameter of each screw being greater than or equal to the mid-portion outer diameter of the same screw and the distal thread major diameter of each screw being less than or equal to the mid-portion outer diameter of the same screw.

11. The plurality of bone screws of claim 8 wherein the distal thread of each screw has a distal thread pitch and the proximal thread of each screw has a proximal thread pitch, the proximal thread pitch of each screw being different than the distal thread pitch of the same screw.

12. The plurality of bone screws of claim 6 , wherein a ratio of the major diameter to the pitch of each screw is sufficiently low to allow the elongate distal portion to be operable to bend as it is threaded into the bone to follow the curved path.

13. The plurality of bone screws of claim 6 , wherein the proximal portion includes a transverse through bore through the proximal portion from a first opening on an outer surface of the proximal portion to a second opening on the outer surface of the proximal portion.

14. A plurality of headless bone screws comprising:

a first bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a helical distal thread formed thereon, the distal thread having an unbroken minor diameter, a pitch and a major diameter; and

a second bone screw comprising an elongate body having a distal portion and a headless proximal portion spaced longitudinally relative to a longitudinal axis, the distal portion having a helical distal thread formed thereon, the distal thread having an unbroken minor diameter, a pitch and a major diameter; the second bone screw distal thread minor diameter being equal to the first bone screw distal thread minor diameter, the second bone screw distal thread pitch being equal to the first bone screw distal thread pitch, and the second bone screw distal thread major diameter being greater than the first bone screw distal thread major diameter; and

wherein the helical distal thread of each screw is operable to bend as it is threaded into a bone to follow a curved path in the bone.

15. The plurality of bone screws of claim 14 wherein each screw further comprises a helical proximal thread formed on the proximal portion.

16. The plurality of bone screws of claim 4 wherein the distal thread of each screw has a distal thread pitch and the proximal thread of each screw has a proximal thread pitch, the proximal thread pitch of each screw being different than the distal thread pitch of the same screw.

17. The plurality of bone screws of claim 15 wherein the distal thread of each screw has a distal thread pitch and the proximal thread of each screw has a proximal thread pitch, the proximal thread pitch of each screw being equal to the distal thread pitch of the same screw.

18. The plurality of bone screws of claim 15 wherein the first bone screw proximal portion has a diameter and the second bone screw proximal portion has a diameter, the second bone screw proximal portion diameter being greater than the first bone screw proximal portion diameter.

19. The Plurality of bone screws of claim 15 , wherein the proximal thread of each screw has a major diameter and a minor diameter and a mid-portion of each screw, between the distal thread and the proximal thread, has an outer diameter, the proximal thread minor diameter of each screw being greater than or equal to the mid-portion outer diameter of the same screw and the distal thread major diameter of each screw being less than or equal to the mid-portion outer diameter of the same screw.

20. The plurality of bone screws of claim 14 , wherein the proximal portion includes a transverse through bore through the proximal portion from a first opening on an outer surface of the proximal portion to a second opening on the outer surface of the proximal portion.

Assignments (3)
SECURITY INTEREST Recorded Mar 30, 2020
From: CONVENTUS ORTHOPAEDICS, INC.
To: HORIZON TECHNOLOGY FINANCE CORPORATION
Reel/Frame 052259/0739 →
NUNC PRO TUNC ASSIGNMENT Recorded Feb 18, 2020
From: INTRAFUSE, LLC
To: CONVENTUS ORTHOPAEDICS, INC.
Reel/Frame 051846/0473 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 12, 2016
From: FALLIN, T. WADE; SINNOT, M. MARY; HOY, ROBERT W.
To: INTRAFUSE, LLC
Reel/Frame 039133/0601 →
Continuity (3)
Provisional Application 62191904 · Jul 13, 2015
Provisional Application 62238780 · Oct 8, 2015
Related Publication 20170014170A1 · Jan 19, 2017
Cited By (1)
US 12,364,525