IP Library Granted Patent US 7,744,527
Granted Patent B2
US 7,744,527 · App. 11/770,272 · Granted Jun 29, 2010

Surgical coring system

Assignee: Apaxis Medical, Inc.
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Quick Facts
Patent No.
US 7,744,527
App. No.
11/770,272
Granted
Jun 29, 2010
Kind
B2
Abstract

Novel surgical tools and methods for off-pump surgery are described herein. A novel coring system is disclosed which employs a balloon catheter and a coring tool which is adapted to be threaded on to a guide wire. The guide wire serves as a track upon which the coring tool is guided. Embodiments of the coring tool ensure complete removal and excision of cored tissue. In addition, the described coring system prevents blood loss during off-pump surgery. In an embodiment, a surgical coring tool comprises a hollow body having an open distal end and a closed proximal end. The open distal end has a cutting edge. The hollow body comprises a vacuum connection to apply suction from said hollow body. The surgical coring tool also comprises a hollow elongate member disposed coaxially within said hollow body. The elongate member is adapted to be inserted on to a guide wire.

Claims (45)

1. A surgical coring tool comprising:

a hollow body having an open distal tip and a closed proximal end, said open distal tip having a cutting edge, wherein said hollow body comprises a vacuum connection to apply suction from said hollow body; and

a hollow elongate member disposed coaxially within said hollow body and extending past said cutting edge of said open distal tip, wherein said elongate member is adapted to be inserted on to a guide wire;

wherein said hollow body comprises:

a hollow coring portion comprising said open distal tip of said hollow body and an open proximal end; and

a vacuum chamber coupled to the open proximal end of said hollow coring portion, said vacuum chamber comprising the closed proximal end of said hollow body, wherein said vacuum chamber comprises said vacuum connection.

2. The surgical coring tool of claim 1 wherein said hollow body is transparent.

3. The surgical coring tool of claim 1 wherein said hollow body comprises a polymeric material.

4. The surgical coring tool of claim 1 wherein said hollow body comprises a metal.

5. The surgical coring tool of claim 1 wherein said vacuum connection is located at said closed proximal end of said hollow body.

6. The surgical coring tool of claim 1 wherein said elongate member is coupled to said closed proximal end of said hollow body.

7. The surgical coring tool of claim 1 , where said cutting edge has a beveled outer surface.

8. The surgical coring tool of claim 1 wherein said elongate member comprises a polymeric material.

9. The surgical coring tool of claim 1 wherein said elongate member is telescopic.

10. The surgical coring tool of claim 1 further comprising a handle attached to said elongate member.

11. The surgical coring tool of claim 1 wherein said vacuum connection comprises a valve for adjusting vacuum.

12. The surgical coring tool of claim 1 further comprising a handle attached to said hollow body.

13. The surgical coring tool of claim 1 wherein said hollow body is cylindrical.

14. The surgical coring tool of claim 1 wherein said vacuum chamber is releasably coupled to said hollow coring portion.

15. The surgical coring tool of claim 1 wherein said vacuum chamber is releasably coupled to said hollow coring portion by a friction fit connection, a threaded connection, a bayonet connection, or a snap fit connection.

16. The surgical coring tool of claim 1 wherein said hollow coring portion has a smaller diameter than said vacuum chamber.

17. The surgical coring tool of claim 1 wherein said hollow coring portion has a larger diameter than said vacuum chamber.

18. The surgical coring tool of claim 1 wherein said hollow coring portion comprises a metal.

19. The surgical coring tool of claim 1 wherein said vacuum chamber is transparent.

20. The surgical coring tool of claim 1 wherein said coring portion comprises a metal, said vacuum chamber is transparent, and said hollow elongate member is further adapted to pierce an organ prior to said coring portion making contact with said organ.

21. A surgical coring system comprising:

a guide wire;

a coring tool comprising

a hollow body having an open distal end and a closed proximal end, said open distal end having a cutting edge, wherein said hollow body comprises a vacuum connection to apply suction from said hollow body; and

an elongate member disposed coaxially within said hollow body and extending past said open distal end, wherein said elongate member is adapted to be inserted on to said guide wire; and

a balloon catheter adapted to be coaxially mounted on to said guide wire.

22. The surgical coring system of claim 21 , wherein said hollow body of said coring tool comprises

a coring portion comprising said open distal end of said hollow body and an open proximal end;

a vacuum chamber coupled to the proximal end of said coring portion, said vacuum chamber comprising the closed proximal end of said hollow body, wherein said vacuum chamber comprises said vacuum connection.

23. The surgical coring system of claim 21 wherein said balloon catheter when inflated has a diameter greater than the diameter of said coring tool.

24. A method of coring an organ comprising:

a) inserting a guide wire into the organ;

b) providing a coring tool comprising a hollow body having an open distal end, said open distal end having a cutting edge, and an elongate member disposed coaxially within said hollow body and extending past said open distal end, wherein said elongate member is adapted to be inserted on to the guide wire;

c) threading the coring tool on to the guide wire to guide the coring tool;

d) piercing the organ with the elongate member; and

e) inserting the coring tool into the organ to core a portion of the organ.

25. The method of claim 24 , further comprising applying suction to coring tool so that the cored portion of the organ is sucked into the coring tool.

26. The method of claim 24 wherein the organ is a heart.

27. The method of claim 24 wherein inserting a guide wire into the organ comprises inserting the guide wire through the heart, through the aorta and the femoral artery.

28. The method of claim 24 further comprising inserting a balloon catheter from the femoral artery over the guide wire into the heart and inflating the balloon catheter, wherein the balloon catheter obstructs a hole in the organ after (d).

Assignments (3)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 7, 2012
From: APAXIS MEDICAL, INC.
To: TEXAS HEART INSTITUTE
Reel/Frame 027664/0478 →
CHANGE OF NAME Recorded Mar 31, 2010
From: SEMMT, INC.
To: APAXIS MEDICAL, INC.
Reel/Frame 024168/0099 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 9, 2007
From: COHN, WILLIAM E.
To: SEMMT, INC.
Reel/Frame 019800/0927 →
Continuity (2)
Provisional Application 6080667000 · Jul 6, 2006
Related Publication 20080009891A1 · Jan 10, 2008