IP Library Granted Patent US 9,381,031
Granted Patent B2
US 9,381,031 · App. 13/386,779 · Granted Jul 5, 2016

Surgical instruments for cutting cavities in intramedullary canals

Inventors: James K. Rains (Cordova, TN); Brian L. Black (Southaven, MS)
Assignee: Smith & Nephew, Inc.
A61B17/32002A61B17/164A61B17/1617A61B17/1631A61B17/320725A61B2017/00526A61B2017/320032A61B2217/005A61B2217/007
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Quick Facts
Patent No.
US 9,381,031
App. No.
13/386,779
Granted
Jul 5, 2016
Kind
B2
Abstract

Surgical instruments and procedures are disclosed that enable the injection of an optimal amount of curable resin and/or the placement of an internal fixation device in an intramedullary canal of a fractured bone. The disclosed instruments and procedures enable a surgeon to clear a portion of the canal of cancellous bone and marrow across the fracture site without damaging the cortical wall.

Claims (41)

1. A surgical instrument for cutting a cavity in an intramedullary canal of a bone, the instrument comprising:

a shaft having a proximal end and a plurality of flexible helical cutting arms, and a distal nose section, the flexible helical cutting arms being formed from a shape memory material and defining a relaxed effective outer diameter that is greater than effective outer diameters of the shaft and the distal nose section,

the flexible helical cutting arms being compressible radially to a compressed effective outer diameter about equal to or less than the effective outer diameters of the shaft and distal nose section.

2. The instrument of claim 1 , wherein the distal nose section includes a drill tip.

3. The instrument of claim 1 , wherein the shape memory material is a shape memory alloy.

4. The instrument of claim 1 , wherein the flexible helical cutting arms have a width, a thickness, and are characterized by a ratio of width to thickness ranging from about 5:1 to about 2:1.

5. The instrument of claim 4 , wherein the flexible helical cutting arms are configured to cut cancellous bone and are configured to substantially not cut cortical bone.

6. The instrument of claim 1 , wherein an expansion force exerted by the flexible helical cutting arms when the flexible helical cutting arms are released from the compressed effective outer diameter to the relaxed effective outer diameter ranges from about 1.0 lbf to about 8.0 lbf.

7. The instrument of claim 6 , wherein the flexible helical cutting arms are configured to cut cancellous bone and are configured to substantially not cut cortical bone.

8. The instrument of claim 6 , wherein the flexible helical cutting arms have a width, a thickness, and are characterized by a ratio of width to thickness ranging from about 5:1 to about 2:1.

9. The instrument of claim 1 , wherein each flexible helical cutting arm rotates at an angle from between about negative 60 degrees to about 60 degrees from a longitudinal axis of the instrument.

10. The instrument of claim 9 , wherein an expansion force exerted by the flexible helical cutting arms when the flexible helical cutting arms are released from the compressed effective outer diameter to the relaxed effective outer diameter ranges from about 1.0 lbf to about 8.0 lbf.

11. The instrument of claim 9 , wherein the flexible helical cutting arms have a width, a thickness and are characterized by a ratio of width to thickness ranging from about 5:1 to about 2:1.

12. The instrument of claim 9 , wherein the flexible helical cutting arms are configured to cut cancellous bone and are configured to substantially not cut cortical bone.

13. The instrument of claim 9 , wherein the shape memory material is a shape memory alloy.

14. The instrument of claim 1 , wherein the flexible helical cutting arms are left-hand helical.

15. The instrument of claim 1 , wherein the shaft comprises at least one of a biocompatible polymer, a steel cable and a twisted wire.

16. A surgical instrument for cutting a cavity in an intramedullary canal of a bone, the instrument comprising:

a shaft comprising a proximal end and a distal end, the distal end of the shaft being coupled to a plurality of flexible helical cutting arms, the plurality of flexible helical cutting arms coupling the shaft to a distal nose section,

the flexible helical cutting arms being formed from a shape memory material and defining a relaxed effective outer diameter that is greater than effective outer diameters of the shaft and the distal nose section, the flexible helical cutting arms being compressible radially to a compressed effective outer diameter about equal to or less than effective outer diameters of the shaft and distal nose section.

17. The instrument of claim 16 , wherein the distal nose section includes a drill tip.

18. The instrument of claim 16 , wherein the shape memory material is a shape memory alloy.

19. The instrument of claim 16 , wherein the flexible helical cutting arms have a width and a thickness, and are characterized by a ratio of width to thickness ranging from about 5:1 to about 2:1.

20. The instrument of claim 16 , wherein an expansion force exerted by the flexible helical cutting arms when the flexible helical cutting arms are released from the compressed effective outer diameter to the relaxed effective outer diameter ranges from about 1.0 lbf to about 8.0 lbf.

21. The instrument of claim 16 , wherein the flexible helical cutting arms are configured to cut cancellous bone and are configured to substantially not cut cortical bone.

22. The instrument of claim 16 , wherein the flexible helical cutting arms are left-hand helical.

23. The instrument of claim 16 , wherein the shaft comprises at least one of a biocompatible polymer, a steel cable and a twisted wire.

24. A surgical instrument for cutting a cavity in an intramedullary canal of a bone, the instrument comprising:

a shaft; and

a plurality of flexible and helical cutting arms, the flexible and helical cutting arms being formed from a shape memory alloy and defining a relaxed effective outer diameter that is greater than an effective outer diameter of the shaft, the flexible cutting arms being compressible radially to a compressed effective outer diameter about equal to or less than the effective outer diameter of the shaft,

wherein an expansion force exerted by the flexible and helical cutting arms is from about 1.0 lbf to about 8.0 lbf.

25. The instrument of claim 24 , wherein the instrument further comprises a distal nose section includes a drill tip.

26. The instrument of claim 24 , wherein the flexible helical cutting arms have a width and a thickness, and are characterized by a ratio of width to thickness ranging from about 5:1 to about 2:1.

27. The instrument of claim 24 , wherein the expansion force is an expansion force exerted by the flexible helical cutting arms when the flexible helical cutting arms are released from the compressed effective outer diameter to the relaxed effective outer diameter.

28. The instrument of claim 24 , wherein the flexible helical cutting arms are configured to cut cancellous bone and are configured to substantially not cut cortical bone.

29. The instrument of claim 24 , wherein the flexible helical cutting arms are left-hand helical.

30. The instrument of claim 24 , wherein the shaft comprises a twisted wire.

31. The instrument of claim 24 , wherein the shaft comprises a biocompatible polymer.

32. The instrument of claim 24 , wherein the shaft comprises a steel cable.

33. The instrument of claim 24 , wherein each flexible helical cutting arm rotates at an angle from between about negative 60 degrees to about 60 degrees from a longitudinal axis of the instrument.

34. The instrument of claim 16 , wherein each flexible helical cutting arm rotates at an angle from between about negative 60 degrees to about 60 degrees from a longitudinal axis of the instrument.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 10, 2012
From: RAINS, JAMES K.; BLACK, BRIAN L.
To: SMITH & NEPHEW, INC.
Reel/Frame 027687/0539 →
Continuity (2)
Provisional Application 61228252 · Jul 24, 2009
Related Publication 20120179161A1 · Jul 12, 2012