IP Library Granted Patent US 9,247,944
Granted Patent B2
US 9,247,944 · App. 13/707,954 · Granted Feb 2, 2016

Vertebral scraper

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Quick Facts
Patent No.
US 9,247,944
App. No.
13/707,954
Granted
Feb 2, 2016
Kind
B2
Abstract

A trialing and preparation system for preparing a disc space between two adjacent vertebrae is provided. The system includes a guide shaft, a trialing cage or spacer, a scraper and a driving shaft. The guide shaft supports the trialing spacer within the disc space and may include an angular adjustment for such access. The scraper sleeves over the guide shaft into an abutting relationship with the adjacent vertebrae. The driving shaft is coupled to the scraper by a pivoting and reciprocation mechanism that allows angular adjustment of the scraper. Also, reciprocation of the driving shaft reciprocates the scraper through a limited sweep of motion to remove osteophytes from the vertebrae.

Claims (57)

1. A scraper for use on a pair of adjacent vertebral bodies having an intervening disc space wherein a guide shaft is positioned in or adjacent the disc space, the scraper comprising:

a body defining an opening configured to fit over the guide shaft and advance toward the distal end of the guide shaft until adjacent the vertebral bodies;

a scraping surface, the body configured to support the scraping surface against the vertebral bodies; and

a reciprocation mechanism configured to reciprocate the body and the scraping surface through a limited sweep range to remove material from the vertebral bodies, the reciprocating mechanism configured to slide over the guide shaft and including:

a driving shaft, a distal end of the driving shaft defining a bearing surface configured to rotationally interact with a corresponding bearing surface on a proximal end of the body; and

an anti-rotation feature configured to block rotation of the reciprocating mechanism relative to the guide shaft, the anti-rotation feature including a flat surface at least partially defining an opening of the reciprocating mechanism and configured to overlay a flat surface on the guide shaft,

wherein the guide shaft has a distal end with a curved surface that allows rotation of the body and anti-rotation feature.

2. A scraper of claim 1 , wherein the reciprocation mechanism includes at least one cam surface supported by the body.

3. A scraper of claim 2 , wherein the at least one cam surface includes a first cam surface at least partially defining the opening and configured to cam against the guide shaft.

4. A scraper of claim 3 , wherein the at least one cam surface includes a second cam surface at least partially defining the opening and configured to cam against the guide shaft.

5. A scraper of claim 4 , wherein the first and second cam surfaces are positioned on opposite sides of the opening.

6. A scraper of claim 5 , wherein a portion of the opening has a closed periphery defined by a proximal portion of the body and a distal portion of the body supports the scraping surface.

7. A scraper of claim 6 , wherein the cam surfaces are convexly arced toward an axis of the body.

8. A scraper of claim 7 , wherein the distal portion of the body includes a pair of flanges.

9. A scraper of claim 8 , wherein the scraping surface includes an abrasion pattern.

10. A scraper of claim 9 , wherein the abrasion pattern includes teeth.

11. A scraper of claim 10 , wherein the teeth have varied heights.

12. A scraper of claim 8 , wherein each of the flanges has a T-shape extending from the proximal portion of the body.

13. A scraper of claim 12 , wherein the proximal portion of the body includes at least a partially cylindrical shape defining the opening.

14. A scraper of claim 13 , wherein the T-shape flanges extend opposite each other across the axis of the body.

15. A scraper of claim 3 , wherein the reciprocation mechanism includes a driving shaft configured to couple to the body and reciprocate the body on the first cam surface against the guide shaft.

16. A scraper of claim 15 , wherein the driving shaft includes a handle.

17. A scraper of claim 15 , wherein the driving shaft includes an axial opening configured to sleeve over the guide shaft.

18. A scraper of claim 1 , wherein the driving shaft includes an axial opening configured to sleeve over the guide shaft.

19. A scraper of claim 18 , wherein the bearing surfaces allow a pitch of the body to change relative to the driving shaft.

20. A scraper of claim 19 , wherein the distal end of the guide shaft includes a trialing spacer configured for insertion into the disc space and the opening of the body is configured to sleeve over the trialing spacer.

21. A scraper of claim 20 , wherein the distal end of the guide shaft is configured to mount to the trialing spacer so that an axis of the guide shaft is at an angle to an axis of the trialing spacer.

22. A scraper of claim 21 , wherein the pitch of the body relative to the driving shaft adjusts to approximate the angle of the guide shaft relative to the trialing spacer as the body is advanced off of the distal end of the guide shaft onto the trialing spacer.

23. A scraper of claim 22 , wherein the bearing surfaces of the body and the driving shaft lock into each other when the body and driving shaft are advanced over the guide shaft.

24. A trialing kit for preparing an intervening disc space between a pair of adjacent vertebral bodies, the trialing kit comprising:

a guide shaft configured for positioning in or adjacent the disc space, the guide shaft including a distal end;

a trialing spacer configured for association with the distal end of the guide shaft and insertion into the disc space; and

a scraper having:

a body defining an opening configured to fit over the guide shaft and the trialing spacer and advance toward the distal end of the guide shaft until adjacent the vertebral bodies, the body including a proximal end defining a bearing surface configured to rotationally interact with a corresponding bearing surface on a distal end of the driving shaft;

a scraping surface, the body configured to support the scraping surface against the vertebral bodies; and

a reciprocation mechanism configured to reciprocate the body and the scraping surface through a limited sweep range to remove material from the vertebral bodies, the reciprocation mechanism configured to slide over the guide shaft and including an anti-rotation feature configured to block rotation of the reciprocation mechanism relative to the guide shaft, the anti-rotation feature including a flat surface at least partially defining an opening of the reciprocation mechanism and configured to overlay a flat surface of the guide shaft;

wherein the distal end of the guide shaft has a curved surface that allows rotation of the body of the scrapper and the anti-rotation feature.

25. A trialing kit of claim 24 , wherein the reciprocation mechanism includes at least one cam surface supported by the body.

26. A trialing kit of claim 25 , wherein the at least one cam surface includes a first cam surface at least partially defining the opening and configured to cam against the guide shaft.

27. A trialing kit of claim 26 , wherein the at least one cam surface includes a second cam surface at least partially defining the opening and configured to cam against the guide shaft.

28. A trialing kit of claim 27 , wherein the first and second cam surfaces are positioned on opposite sides of the opening.

29. A trialing kit of claim 28 , wherein a portion of the opening has a closed periphery defined by a proximal portion of the body and a distal portion of the body supports the scraping surface.

30. A trialing kit of claim 29 , wherein the cam surfaces are convexly arced toward an axis of the body.

31. A trialing kit of claim 30 , wherein the distal portion of the body includes an abrasion pattern with varied heights.

32. A trialing kit of claim 28 , further comprising a driving shaft configured to couple to the body and reciprocate the body on the cam surfaces against the guide shaft.

33. A trialing kit of claim 32 , wherein the driving shaft includes an axial opening configured to sleeve over the guide shaft.

34. A trialing kit of claim 33 , wherein the guide shaft has a distal end with a curved surface that allows rotation of the body.

35. A method of scraping a vertebral body, the method including:

positioning a guide shaft in or adjacent a disc space next to the vertebral body;

fitting a scraper body over the guide shaft;

advancing the scraper body toward a distal end of the guide shaft until adjacent the vertebral body;

coupling a driving shaft to the scraper body by sliding the driving shaft over the guide shaft and positioning a bearing surface included at a proximal end of the body adjacent to a corresponding bearing surface on a distal end of the driving shaft such that the body bearing surface and the driving shaft bearing surface are configured to rotationally interact, the driving shaft including an anti-rotation feature configured to block rotation of the driving shaft relative to the guide shaft, the anti-rotation feature including a flat surface at least partially defining an opening of the driving shaft and configured to overlay a flat surface on the guide shaft;

reciprocating a scraping surface of the scraper body through a limited sweep range to remove material from the vertebral body, where the guide shaft has a distal end with a curved surface that allows rotation of the scraper body and the anti-rotation feature of the driving shaft.

36. A method of claim 35 , further comprising reciprocating the driving shaft to reciprocate the scraping surface.

37. A method of claim 36 , further comprising adjusting a pitch of the trialing spacer relative to the guide shaft to align the trialing spacer with the disc space.

38. A method of claim 37 , further comprising coupling a trialing spacer to a distal end of the guide shaft and inserting the trialing spacer into the disc space.

39. A method of claim 38 , further comprising adjusting a pitch of the scraper body to match the pitch of the guide shaft.

Assignments (10)
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT APPLICATION NO. US 13/486,591 PREVIOUSLY RECORDED ON REEL 030358 FRAME 0945. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Jun 5, 2017
From: SYNTHES USA, LLC
To: DEPUY SPINE, LLC
Reel/Frame 042687/0849 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INCORRECT APPL. NO. 13/486,591 PREVIOUSLY RECORDED AT REEL: 030359 FRAME: 0001. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded May 17, 2017
From: DEPUY SPINE, LLC
To: HAND INNOVATIONS LLC
Reel/Frame 042621/0565 →
CORRECTIVE ASSIGNMENT TO CORRECT THE INVENTOR 'S NAME PREVIOUSLY RECORDED AT REEL: 036652 FRAME: 0862. ASSIGNOR(S) HEREBY CONFIRMS THE ASSIGNMENT. Recorded Sep 19, 2016
From: FENN, MATTHEW
To: SYNTHES USA, LLC
Reel/Frame 040070/0155 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2015
From: WHITE, MICHAEL
To: SYNTHES GMBH
Reel/Frame 036652/0881 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2015
From: FENN, MATTEW; HEIMAN, STEPHEN; SAIDHA, SEAN; WALTERS, GREGORY
To: SYNTHES USA, LLC
Reel/Frame 036652/0862 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2015
From: SYNTHES GMBH
To: SYNTHES USA, LLC
Reel/Frame 036652/0904 →
CHANGE OF NAME Recorded Feb 24, 2015
From: DEPUY SYNTHES PRODUCTS, LLC
To: DEPUY SYNTHES PRODUCTS, INC.
Reel/Frame 035074/0647 →
CHANGE OF NAME Recorded May 6, 2013
From: HAND INNOVATIONS LLC
To: DEPUY SYNTHES PRODUCTS, LLC
Reel/Frame 030359/0036 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2013
From: SYNTHES USA, LLC
To: DEPUY SPINE, LLC
Reel/Frame 030358/0945 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 6, 2013
From: DEPUY SPINE, LLC
To: HAND INNOVATIONS LLC
Reel/Frame 030359/0001 →