IP Library Granted Patent US 11,712,250
Granted Patent B2
US 11,712,250 · App. 17/948,424 · Granted Aug 1, 2023

Autografting tool with enhanced flute profile and methods of use

Inventor: Salah Huwais (Jackson, MI)
Assignee: Huwais IP Holding LLC
A61B17/1615A61B17/1673A61C8/0089A61B17/1628A61B17/1728A61B2017/1602A61B2090/062
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Quick Facts
Patent No.
US 11,712,250
App. No.
17/948,424
Granted
Aug 1, 2023
Kind
B2
Abstract

Tools and methods for expanding a precursor hole in a host material to receive a fixture. The precursor hole is enlarged by a rotary tool having helical flutes and interposed lands. The flutes have a negative rake angle. The lands each have a working edge that cuts the host material when the tool is rotated in a cutting direction, and that condenses the host material when the tool is rotated in a densifying direction. The body of the rotary tool has a stopper section that plugs the hole when a certain depth is reached. When the tool is used with a copious wash of irrigating fluid at or below the necessary depth, hydraulic pressure builds inside the precursor hole. The hydraulic pressure can be advantageously exploited in cutting mode to autograft a slurry of host material particles into the sidewalls of the hole and create an incipient densifying crust.

Claims (96)

1. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a body extending from said shank, said body having an apical end remote from said shank, a plurality of flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction, wherein said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

2. The rotary osteotome of claim 1 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

3. The rotary osteotome of claim 1 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

4. The rotary osteotome of claim 1 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

5. The rotary osteotome of claim 1 , wherein said heel-side angle is constant along the length of each said flute.

6. The rotary osteotome of claim 1 , wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

7. The rotary osteotome of claim 1 , wherein said body has a conically tapered profile decreasing from a maximum diameter adjacent said shank to a minimum diameter adjacent said apical end, said flutes helically spiraling about said body.

8. The rotary osteotome of claim 7 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter, and further including a stopper section of said body disposed between said flutes and said shank.

9. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a tapered body extending from said shank, said body having an apical end remote from said shank, a plurality of helically spiraling flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute, said working edge helically twisting about said body,

said apical end including at least one lip extending radially from adjacent said longitudinal axis, a first trailing flank canted from said lip, a second trailing flank falling away from said first trailing flank, at least one said flute opening directly into one of said first and second trailing flanks to upwardly channel bone debris away from said lip,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction, wherein said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

10. The rotary osteotome of claim 9 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

11. The rotary osteotome of claim 9 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

12. The rotary osteotome of claim 9 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

13. The rotary osteotome of claim 9 , wherein said heel-side angle is constant along the length of each said flute.

14. The rotary osteotome of claim 9 , wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

15. The rotary osteotome of claim 9 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter.

16. The rotary osteotome of claim 9 , further including a stopper section of said body disposed between said flutes and said shank.

17. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a body extending from said shank, said body having an apical end remote from said shank, a plurality of flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction, wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

18. The rotary osteotome of claim 17 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

19. The rotary osteotome of claim 17 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

20. The rotary osteotome of claim 17 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

21. The rotary osteotome of claim 17 , wherein said heel-side angle is constant along the length of each said flute.

22. The rotary osteotome of claim 17 , wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

23. The rotary osteotome of claim 17 , wherein said body has a conically tapered profile decreasing from a maximum diameter adjacent said shank to a minimum diameter adjacent said apical end, said flutes helically spiraling about said body.

24. The rotary osteotome of claim 23 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter, and further including a stopper section of said body disposed between said flutes and said shank.

25. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a body extending from said shank, said body having an apical end remote from said shank, a plurality of flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction,

wherein said heel-side angle is constant along the length of each said flute.

26. The rotary osteotome of claim 25 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

27. The rotary osteotome of claim 25 , said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

28. The rotary osteotome of claim 25 , wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

29. The rotary osteotome of claim 25 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

30. The rotary osteotome of claim 25 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

31. The rotary osteotome of claim 25 , wherein said body has a conically tapered profile decreasing from a maximum diameter adjacent said shank to a minimum diameter adjacent said apical end, said flutes helically spiraling about said body.

32. The rotary osteotome of claim 31 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter, and further including a stopper section of said body disposed between said flutes and said shank.

33. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a body extending from said shank, said body having an apical end remote from said shank, a plurality of flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction,

wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

34. The rotary osteotome of claim 33 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

35. The rotary osteotome of claim 33 , said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

36. The rotary osteotome of claim 33 , wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

37. The rotary osteotome of claim 33 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

38. The rotary osteotome of claim 33 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

39. The rotary osteotome of claim 33 , wherein said body has a conically tapered profile decreasing from a maximum diameter adjacent said shank to a minimum diameter adjacent said apical end, said flutes helically spiraling about said body.

40. The rotary osteotome of claim 39 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter, and further including a stopper section of said body disposed between said flutes and said shank.

41. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a tapered body extending from said shank, said body having an apical end remote from said shank, a plurality of helically spiraling flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute, said working edge helically twisting about said body,

said apical end including at least one lip extending radially from adjacent said longitudinal axis, a first trailing flank canted from said lip, a second trailing flank falling away from said first trailing flank, at least one said flute opening directly into one of said first and second trailing flanks to upwardly channel bone debris away from said lip,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction, wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

42. The rotary osteotome of claim 41 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

43. The rotary osteotome of claim 41 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

44. The rotary osteotome of claim 41 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

45. The rotary osteotome of claim 41 , wherein said heel-side angle is constant along the length of each said flute.

46. The rotary osteotome of claim 41 , wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

47. The rotary osteotome of claim 41 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter.

48. The rotary osteotome of claim 41 , further including a stopper section of said body disposed between said flutes and said shank.

49. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a tapered body extending from said shank, said body having an apical end remote from said shank, a plurality of helically spiraling flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute, said working edge helically twisting about said body,

said apical end including at least one lip extending radially from adjacent said longitudinal axis, a first trailing flank canted from said lip, a second trailing flank falling away from said first trailing flank, at least one said flute opening directly into one of said first and second trailing flanks to upwardly channel bone debris away from said lip,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction,

wherein said heel-side angle is constant along the length of each said flute.

50. The rotary osteotome of claim 49 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

51. The rotary osteotome of claim 49 , said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

52. The rotary osteotome of claim 49 , wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

53. The rotary osteotome of claim 49 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

54. The rotary osteotome of claim 49 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

55. The rotary osteotome of claim 49 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter.

56. The rotary osteotome of claim 49 , further including a stopper section of said body disposed between said flutes and said shank.

57. A rotary osteotome operable in a cutting direction and a reverse densifying direction, comprising:

a shank establishing a longitudinal axis of rotation for the cutting and reverse densifying directions,

a tapered body extending from said shank, said body having an apical end remote from said shank, a plurality of helically spiraling flutes disposed about said body, each said flute having a cutting face on one side thereof defining a rake angle and a densifying face on the other side thereof defining a heel-side angle, for each said densifying face the associated said heel-side angle is a positive angle measured in the cutting direction, said flutes having an axial length and radial depth, a working edge along said cutting face of the one adjacent said flute, said working edge helically twisting about said body,

said apical end including at least one lip extending radially from adjacent said longitudinal axis, a first trailing flank canted from said lip, a second trailing flank falling away from said first trailing flank, at least one said flute opening directly into one of said first and second trailing flanks to upwardly channel bone debris away from said lip,

for each said cutting face at least a portion of the associated said rake angle is a negative rake angle measured in the cutting direction,

wherein said heel-side angle fluctuates along the length of said flutes with a total variance of less than 30°.

58. The rotary osteotome of claim 57 , wherein said flutes have a regressive depth measuring deepest adjacent said apical end.

59. The rotary osteotome of claim 57 , said negative rake angle fluctuates along the length of each said flute with a total variance of less than 30°.

60. The rotary osteotome of claim 57 , wherein said negative rake angle fluctuates along the length of each said flute with a total variance of greater than 30°.

61. The rotary osteotome of claim 57 , wherein said negative rake angle changes along the length of each said flute in a progressive manner.

62. The rotary osteotome of claim 57 , wherein said negative rake angle changes along the length of each said flute in a regressive manner.

63. The rotary osteotome of claim 57 , wherein said working edges wind about said body in a direction that turns away from a non-cutting direction as said conically tapered profile decreases in diameter.

64. The rotary osteotome of claim 57 , further including a stopper section of said body disposed between said flutes and said shank.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 24, 2026
From: HUWAIS IP HOLDING LLC
To: VERSAH, LLC
Reel/Frame 074954/0776 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 20, 2022
From: HUWAIS, SALAH, DR.
To: HUWAIS IP HOLDING LLC
Reel/Frame 061149/0518 →
Continuity (4)
Continuation 17201154 · Mar 15, 2021
Continuation 16069967
Provisional Application 62278579 · Jan 14, 2016
Related Publication 20230013222A1 · Jan 19, 2023