IP Library Granted Patent US 46,872
Granted Patent E1
US 46,872 · App. 15/454,638 · Granted May 29, 2018

Guidewire and method for surgical procedures

Inventors: Wyatt Drake Geist (Davie, FL); Arden Allen Geist, Sr. (Indialantic, FL)
Assignee: Orthovita, Inc.
A61B17/1757A61B17/8897
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Quick Facts
Patent No.
US 46,872
App. No.
15/454,638
Granted
May 29, 2018
Kind
E1
Abstract

A surgical guide wire or K-wire and method of use are provided. The K-wire, or guide wire, has opposite end portions and a shank portion in between. One end portion has a deformable end portion that, once outside of a confining guide passage, can be deformed to present a projected forward facing area that is larger than the transverse cross section of the K-wire, or guide wire, while in the passage. The increased area will provide increased resistance to additional forward axial movement into the surgical site.

Claims (43)

1. A method of conducting a medical procedure on a surgical site using a guide wire, the method comprising the steps of:

placing a surgical tool at a surgical site, said surgical tool having a guiding through bore which terminates in a distal end opening;

passing a guide wire having a manipulative end, a center portion and an operative end through said guiding through bore, the guide wire being monolithic and bifurcating into two portions at the operative end, said operative end configured to be traversable between a first configuration and a second configuration configured to limit forward axial motion of said guide wire into said surgical site; and

traversing said guide wire from said first configuration to said second configuration by passing said guide wire operative end beyond said opening of said through bore, said second configuration defined by said operative end having a deformed projected area that is greater than the cross sectional area of the guide wire when in said first configuration,

wherein said two portions at the operative end includes are two equally sized deployable free ends which diverge from a common region of said guide wire, each said free end having a first linear portion and a second portion which diverges from the longitudinal axis of said guide wire at a bend, said bend positioned between said common region of said guide wire and a distal end of said free end, wherein each said bend is positioned at a predetermined location within said free end to provide a predetermined separation angle, wherein each said free end contains at least one bone or tissue engagement member.

2. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 further including the step of traversing said guide wire from said second configuration to said first configuration by retracting said guide wire from said surgical site, whereby retracting said operative end from a position extending past said opening of said surgical tool to a position within said through bore results in a cross sectional area that is less than the area of said projected area when in said second configuration.

3. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein said treatment site is bone or bone tissue.

4. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein said tissue engagement member includes a plurality of teeth provided on an inner surface of the free end.

5. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein said bend of each said free end is positioned closer to said distal end of said free end.

6. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein said bend of each said free end is positioned closer to said point where said free ends diverge from a common region of said guide wire.

7. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said bend is positioned at a predetermined location within said free ends to provide an angle of at least 30 degrees.

8. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said bend is positioned at a predetermined location within said free ends to provide an angle of at least 50 degrees.

9. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said free end is constructed from a flexible material.

10. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said free end is constructed from a memory metal alloy.

11. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein said memory metal alloy is a super-elastic material.

12. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein the memory metal alloy includes Nitinol.

13. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said deployable end is constructed from a memory metal alloy.

14. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said deployable end is constructed of a resiliently deformable spring material.

15. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said deployable end has a deformable portion made of a plastically deformable material.

16. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein each said free end is self deployable.

17. The method of conducting a medical procedure on a surgical site using a guide wire according to claim 1 wherein the surgical site is a vertebral body.

18. A method of conducting a spinal procedure using a guide wire comprising the steps of:

placing a surgical tool at a vertebral body, the surgical tool having a guiding through bore which terminates at a distal end opening;

passing a guide wire having a manipulative end, a center portion and an operative end through the guiding through bore, the guide wire being monolithic and bifurcating into two portions at the operative end, the operative end being in a first configuration while in the through bore; and

manipulating the manipulative end to pass the operative end beyond the distal end opening, the operative end being in a second configuration outside of the through bore,

wherein the second configuration of the operative end is configured to limit movement of the guide wire in the vertebral body.

19. The method of claim 18, wherein a projected area of the operative end is greater in the second configuration than in the first configuration.

20. The method of claim 18, wherein the two portions at the operative end are two equally sized deployable free ends which diverge from a common region of the guide wire, each free end having a first linear portion and a second portion which diverges from the longitudinal axis of said guide wire at a bend, wherein each said bend is positioned at a predetermined location to provide a predetermined separation angle between the first and second linear portions in the second position.

21. The method of claim 18, further including the step of moving the operative end from the second configuration to the first configuration by retracting the operative end at least partially into the through bore.

22. The method of claim 18, further including the step of removing the surgical tool by pulling on the surgical tool and pushing down on the guide wire.

23. The method of claim 18, further including the step of using the operative end of the guide wire as a marker or a stop for placing a second surgical tool.

24. The method of claim 20, wherein each free end includes at least one bone or tissue engagement member.

25. The method of claim 24, wherein the bone or tissue engagement members are teeth.

26. The method of claim 20, wherein the bends are positioned at a predetermined location such that the separation angle is at least 30 degrees.

27. The method of claim 20, wherein the bends are positioned at a predetermined location such that the separation angle is at least 50 degrees.

28. The method of claim 20, wherein each free end is constructed from a flexible material.

29. The method of claim 20, wherein each free end is constructed from a memory metal alloy.

30. The method of claim 29, wherein the memory metal alloy is a super-elastic material.

31. The method of claim 29, wherein said memory metal alloy includes Nitinol.

32. The method of claim 20, wherein each free end is constructed from a rigid material.

33. The method of claim 20, wherein each free end is constructed of a resiliently deformable spring material.

34. The method of claim 20, wherein each free end has a deformable portion made of a plastically deformable material.

35. The method of claim 20, wherein each free end is self deployable.

Assignments (4)
CORRECTIVE ASSIGNMENT TO CORRECT THE ASSIGNMENT EXECUTION DATE FROM 11/8/2020 TO 11/8/2023 PREVIOUSLY RECORDED ON REEL 065734 FRAME 0863. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Dec 7, 2023
From: ORTHOVITA, INC.
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 065819/0377 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 1, 2023
From: ORTHOVITA, INC.
To: HOWMEDICA OSTEONICS CORP.
Reel/Frame 065734/0863 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 23, 2017
From: SAFE WIRE HOLDING, LLC; SAFEWIRE, LLC
To: ORTHOVITA, INC.
Reel/Frame 042797/0979 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jun 22, 2017
From: GEIST, WYATT DRAKE; GEIST, SR., ARDEN ALLEN
To: SAFE WIRE HOLDING, LLC
Reel/Frame 042788/0653 →
Continuity (6)
Reissue 14280277 · May 16, 2014
Continuation 13973677 · Aug 22, 2013
Continuation In Part 13722667 · Dec 20, 2012
Continuation In Part 13037947 · Mar 1, 2011
Continuation In Part 12823791 · Jun 25, 2010
Provisional Application 61220828 · Jun 26, 2009