IP Library Granted Patent US 8,784,450
Granted Patent B2
US 8,784,450 · App. 13/101,129 · Granted Jul 22, 2014

Interarticulating spinous and transverse process staples for spinal fusion

Inventors: Mosheh T. Moskowitz (Rockville, MD); Ahmnon D. Moskowitz (Rockville, MD); Nathan C. Moskowitz (Rockville, MD)
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Quick Facts
Patent No.
US 8,784,450
App. No.
13/101,129
Granted
Jul 22, 2014
Kind
B2
Abstract

Thoracic/lumbar and cervical spinous process staples which staple/fuse adjacent spinous processes are disclosed. Thoracic/lumbar transverse process staples which staple/fuse adjacent transverse processes are also disclosed. Each embodiment has upper and lower claws connected by a ratchet spring mechanism, along with a multiplicity of bone fastener prongs attached to the upper and lower claws. Two sets of prongs on each staple claw are spaced by a distance approximately equal to the distance separating adjacent spinous or transverse processes so as to facilitate stapling/fusion of two adjacent processes. Also disclosed are staple prongs with multiple perforations which enable incorporation of bone fusion material thereby facilitating stapling/fusion of spinal elements.

Claims (119)

1. An interarticulating staple for clamping one of a thoracic/lumbar Spinous Process (SP), a thoracic/lumbar Transverse Process (TP), and cervical Spinous Process (SP), the interarticulating staple comprising:

a first claw;

a second claw;

a staple pin pivotally connecting the first claw and the second claw; and

a ratchet mechanism that limits an opening force of the first claw with respect to the second claw at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position.

2. The staple according to claim 1 , wherein the ratchet mechanism comprises:

a ratchet pin pivotably mounted to the first claw,

wherein the second claw includes a plurality of ratchet teeth,

wherein the ratchet pin includes a flexure spring configured to sequentially engage individual teeth of the plurality of ratchet teeth as the first claw pivots about the staple pin with respect to the second claw in a closing direction, the flexure spring cooperating with each of the plurality of ratchet teeth to prevent an opening movement of the first claw with respect to the second claw in the opening direction at a plurality of positions including the fully open position, the fully closed position, and the intermediate position.

3. The staple according to claim 1 , wherein the ratchet mechanism comprises:

a ratchet pin pivotably mounted to the second claw,

wherein the first claw includes a plurality of ratchet teeth,

wherein the ratchet pin includes a flexure spring configured to sequentially engage individual teeth of the plurality of ratchet teeth as the first claw pivots about the staple pin with respect to the second claw in a closing direction,

wherein, at each location where the flexure spring engages the individual teeth of the plurality of ratchet teeth, the flexure spring prevents the first claw from moving in an opening direction with respect to the second claw and permits the first claw to continue to move in the closing direction with respect to the second claw, and

wherein the flexure spring engages the individual teeth of the plurality of ratchet teeth at a plurality of positions including at least the fully open position, the fully closed position, and the intermediate position.

4. The staple according to claim 1 , wherein the first claw includes a clamping surface and the second claw includes a clamping surface.

5. The staple according to claim 1 , wherein the first claw includes a clamping surface having a plurality of ridges, and

wherein the second claw includes a clamping surface having a plurality of ridges.

6. The staple according to claim 1 , wherein the first claw includes a clamping surface having a plurality of prongs.

7. The staple according to claim 6 , wherein the second claw includes a clamping surface having a plurality of prongs.

8. The staple according to claim 6 , wherein one of the plurality of prongs includes a perforation.

9. The staple according to claim 6 , wherein one of the plurality of prongs includes a plurality of perforations.

10. The staple according to claim 6 , wherein each of the plurality of prongs includes a perforation.

11. The staple according to claim 1 , wherein the first claw and the second claw each include a portion having a staple pin opening,

wherein the portion having the staple pin opening of the first claw overlaps the portion having the staple pin opening of the second claw, and

wherein the staple pin engages the staple pin opening of the first claw and the second claw to pivotally connect the first claw to the second claw.

12. The staple according to claim 11 , wherein the portion having the staple pin opening of each of the first claw and the second claw includes claw teeth, and

wherein the claw teeth of the first claw interdigitate with the claw teeth of the second claw.

13. The staple according to claim 4 , wherein the clamping surface of the first claw opposes the clamping surface of the second claw.

14. The staple according to claim 2 , wherein the ratchet pin is pivotably mounted to the first claw by a ratchet bolt.

15. The staple according to claim 1 , wherein the ratchet mechanism comprises:

a ratchet pawl pivotably mounted to the first claw,

wherein the second claw includes a plurality of ratchet teeth, and

wherein a portion of the ratchet pawl is configured to sequentially engage individual teeth of the plurality of ratchet teeth to fix a position of the first claw with respect to the second claw at least at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position.

16. The staple of claim 15 , wherein of the ratchet pawl is configured to sequentially engage of the individual teeth of the plurality of ratchet teeth as the first claw pivots with respect to the second claw in a closing direction, and

wherein, at each location where the ratchet pawl engages the individual teeth of the plurality of ratchet teeth, the ratchet pawl prevents the first claw from moving in an opening direction with respect to the second claw and permits the first claw to continue to move in the closing direction with respect to the second claw.

17. The staple according to claim 2 , wherein the ratchet pawl is pivotably mounted to the first claw by a ratchet bolt.

18. The staple according to claim 1 , wherein the first claw includes a first clamping surface and the second claw includes a second clamping surface,

wherein the first clamping surface is opposed to the second clamping surface.

19. The staple according to claim 18 , wherein each of the first clamping surface and the second clamping surface has a convex surface.

20. The staple according to claim 18 , wherein each of the first clamping surface and the second clamping surface has a concave surface.

21. The staple according to claim 18 , wherein the staple is a thoracic/lumbar Spinous Process (SP) staple configured to clamp a thoracic/lumbar Spinous Process (SP), and

wherein each of the first clamping surface and the second clamping surface has a concave surface.

22. The staple according to claim 6 , wherein the staple is a thoracic/lumbar Spinous Process (SP) staple configured to clamp a thoracic/lumbar Spinous Process (SP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar Spinous Process (SP) distance.

23. The staple according to claim 7 , wherein the staple is a thoracic/lumbar Spinous Process (SP) staple configured to clamp a thoracic/lumbar Spinous Process (SP),

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to an inter-lumbar Spinous Process (SP) distance.

24. The staple according to claim 7 , wherein the staple is a thoracic/lumbar Spinous Process (SP) staple configured to clamp a thoracic/lumbar Spinous Process (SP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs,

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar Spinous Process (SP) distance,

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to the inter-lumbar Spinous Process (SP) distance.

25. The staple according to claim 24 , wherein the first distance is equal to the second distance.

26. The staple according to claim 24 , wherein the first distance is not equal to from the second distance.

27. The staple according to claim 18 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple, and

wherein each of the first clamping surface and the second clamping surface has a concave surface portion.

28. The staple according to claim 18 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple, and

wherein each of the first clamping surface and the second clamping surface has a convex surface portion and a concave surface portion.

29. The staple according to claim 18 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple, and

wherein each of the first clamping surface and the second clamping surface has a convex surface portion and a concave surface portion,

wherein the convex surface portion of the first clamping surface of the first claw is opposed to the convex surface portion of the second clamping surface of the second claw, and

wherein the concave surface portion of the first clamping surface of the first claw is opposed to the concave surface portion of the second clamping surface of the second claw.

30. The staple according to claim 6 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple configured to clamp a thoracic/lumbar Transverse Process (TP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar Transverse Process (TP) distance.

31. The staple according to claim 7 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple configured to clamp a thoracic/lumbar Transverse Process (TP),

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to an inter-lumbar Transverse Process (TP) distance.

32. The staple according to claim 7 , wherein the staple is a thoracic/lumbar Transverse Process (TP) staple configured to clamp a thoracic/lumbar Transverse Process (TP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs,

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar Transverse Process (TP) distance,

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to the inter-lumbar Transverse Process (TP) distance.

33. The staple according to claim 32 , wherein the first distance is equal to the second distance.

34. The staple according to claim 32 , wherein the first distance is not equal to from the second distance.

35. The staple according to claim 18 , wherein the staple is a cervical Spinous Process (SP) staple, and

wherein each of the first clamping surface and the second clamping surface has a concave surface portion.

36. The staple according to claim 18 , wherein the staple is a cervical Spinous Process (SP) staple, and

wherein each of the first clamping surface and the second clamping surface has a convex surface portion and a concave surface portion.

37. The staple according to claim 18 , wherein the staple is a cervical Spinous Process (SP) staple, and

wherein each of the first clamping surface and the second clamping surface has a convex surface portion and a concave surface portion,

wherein the convex surface portion of the first clamping surface of the first claw is opposed to the convex surface portion of the second clamping surface of the second claw, and

wherein the concave surface portion of the first clamping surface of the first claw is opposed to the concave surface portion of the second clamping surface of the second claw.

38. The staple according to claim 6 , wherein the staple is a cervical Spinous Process (SP) staple configured to clamp a cervical Spinous Process (SP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar cervical Spinous Process (SP) distance.

39. The staple according to claim 7 , wherein the staple is a cervical Spinous Process (SP) staple configured to clamp a cervical Spinous Process (SP),

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to an inter-lumbar cervical Spinous Process (SP) distance.

40. The staple according to claim 7 , wherein the staple is a cervical Spinous Process (SP) staple configured to clamp a cervical Spinous Process (SP),

wherein the plurality of prongs on the first claw are separated into a first group of prongs and a second group of prongs,

wherein the first group of prongs on the first claw is separated from the second group of prongs on the first claw by a first distance that is substantially equal to an inter-lumbar cervical Spinous Process (SP) distance,

wherein the plurality of prongs on the second claw are separated into a first group of prongs and a second group of prongs, and

wherein the first group of prongs on the second claw is separated from the second group of prongs on the second claw by a second distance that is substantially equal to the inter-lumbar cervical Spinous Process (SP) distance.

41. The staple according to claim 40 , wherein the first distance is equal to the second distance.

42. The staple according to claim 40 , wherein the first distance is not equal to the second distance.

43. The staple according to claim 6 , wherein one of the plurality of prongs is a solid, straight prong.

44. The staple according to claim 6 , wherein one of the plurality of prongs is a solid, curved prong.

45. The staple according to claim 6 , wherein one of the plurality of prongs is a perforated, straight prong.

46. The staple according to claim 6 , wherein one of the plurality of prongs is a perforated, curved prong.

47. The staple according to claim 8 , wherein the perforation is configured to hold bone/biological fusion promoters to facilitate fusion.

48. An interarticulating staple for clamping one of a thoracic/lumbar Spinous Process (SP), a thoracic/lumbar Transverse Process (TP), and cervical Spinous Process (SP), the interarticulating staple comprising:

first means for clawing bone;

second means for clawing bone;

a staple pin pivotally connecting the first means and the second means; and

ratchet means for limiting an opening force of the first means with respect to the second means at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position.

49. An interarticulating staple for clamping one of a thoracic/lumbar Spinous Process (SP), a thoracic/lumbar Transverse Process (TP), and cervical Spinous Process (SP), the interarticulating staple comprising:

first means for clawing bone and second means for clawing bone, the first means pivotally connected to the second means; and

ratchet means for limiting an opening force of the first means with respect to the second means and fixing a position of the first means with respect the second means at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position.

50. An interarticulating staple for clamping one of a thoracic/lumbar Spinous Process (SP), a thoracic/lumbar Transverse Process (TP), and cervical Spinous Process (SP), the interarticulating staple comprising:

a first claw having a first clamping surface and a second claw having a second clamping surface, wherein the first clamping surface and the second clamping surface cooperate to clamp a pair of adjacent spinous processes when the first claw and the second claw are in a closed position;

a staple pin pivotally connecting the first claw and the second claw; and

a ratchet mechanism that limits an opening force of the first claw with respect to the second claw at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position.

51. A method of providing an interarticulating staple for positioning on a pair of adjacent spinous processes to clamp one of a thoracic/lumbar Spinous Process (SP), a thoracic/lumbar Transverse Process (TP), and cervical Spinous Process (SP), the method of providing the interarticulating staple comprising:

providing a first claw having a first clamping surface and a second claw having a second clamping surface, wherein the first clamping surface and the second clamping surface cooperate to clamp the pair of adjacent spinous processes when the first claw and the second claw are in a closed position;

providing a staple pin pivotally connecting the first claw and the second claw; and

providing a ratchet mechanism that limits an opening force of the first claw with respect to the second claw at a fully open position, a fully closed position, and an intermediate position between the fully open position and the fully closed position such that the interarticulating staple can be secured to a pair of adjacent spinous processes by clamping the first clamping surface and the second clamping surface to the pair of adjacent spinous processes in at least one of the intermediate position and the fully closed position.

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 14, 2018
From: MOSKOWITZ, NATHAN C.
To: MOSKOWITZ FAMILY LLC
Reel/Frame 045586/0373 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2016
From: MOSKOWITZ, AHMNON D.
To: MOSKOWTIZ, NATHAN C.
Reel/Frame 039331/0648 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 3, 2016
From: MOSKOWITZ, MOSHEH T.
To: MOSKOWITZ, NATHAN C.
Reel/Frame 039331/0867 →
Continuity (10)
Continuation In Part 12471345 · May 22, 2009
Continuation In Part 12471340 · May 22, 2009
Continuation In Part 12054335 · Mar 24, 2008
Continuation In Part 11842855 · Aug 21, 2007
Continuation In Part 11536815 · Sep 29, 2006
Continuation In Part 11208644 · Aug 23, 2005
Provisional Application 60670231 · Apr 12, 2005
Provisional Application 61419679 · Dec 3, 2010
Provisional Application 61425749 · Dec 21, 2010
Related Publication 20110319935A1 · Dec 29, 2011