IP Library › Granted Patent US 7,686,758
Granted Patent B2
US 7,686,758 · App. 11/527,097 · Granted Mar 30, 2010

Cannula tip for a cardiac assist device

Assignees: HITMAC (USA), Inc.; Baylor College of Medicine
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Quick Facts
Patent No.
US 7,686,758
App. No.
11/527,097
Granted
Mar 30, 2010
Kind
B2
Abstract

The present invention provides an inflow cannula tip that is shaped to prevent suction with the ventricular wall and adapted to prevent platelet adhesion. In particular, the inlet portion of the cannula tip comprises two projections extending from the cylindrical body of the cannula tip with gaps between the projections. The projections may have beveled edges. The inlet portion of the cannula tip can accept blood flow from either the gaps in the side or from the bottom of the tip. Even if the edge of the cannula tip is close to or even touching ventricle wall, a suction condition will not result, as blood is allowed to flow through the gaps between the projections.

Claims (43)

1. An inflow cannula tip for use with a cardiac assist device, comprising:

a hollow cylindrical body having a first end adapted for connection to a cannula for an implantable cardiac assist device; and

an open-ended inlet portion at a second end of said body comprising two projections extending from said body and forming two gaps between said projections, the gaps being designed and adapted to prevent a suction condition when said cannula tip is in an implanted position and the open-ended inlet portion is in contact with an inner wall surface of an organ;

wherein:

the cannula tip is comprised of a hard material; and

a ratio of a diameter of the inlet portion to the depth of the gaps is in a range of between approximately 1.5-3.5.

2. An inflow cannula tip in accordance with claim 1 , wherein:

the diameter of the inflow portion is approximately 0.625 inches; and

the depth of the gaps is approximately 0.31 inches.

3. An inflow cannula tip in accordance with claim 2 , wherein the cannula tip is for use with a long term implantable left ventricular assist device.

4. An inflow cannula tip in accordance with claim 1 , wherein:

the two gaps comprise a proximal gap and a distal gap;

said distal gap has a smaller depth than said proximal gap.

5. An inflow cannula tip in accordance with claim 1 , wherein:

the diameter of the inflow portion is approximately 0.625 inches;

the depth of the proximal gap is approximately 0.31 inches; and

the depth of the distal gap is approximately 0.21 inches.

6. An inflow cannula tip in accordance with claim 5 , wherein the cannula tip is for use with a long term implantable right ventricular assist device.

7. An inflow cannula tip in accordance with claim 1 , wherein said projections comprise semi-circular projections.

8. An inflow cannula tip in accordance with claim 1 , wherein said gaps are approximately U-shaped gaps.

9. An inflow cannula tip in accordance with claim 1 , wherein said projections have beveled edges.

10. An inflow cannula tip in accordance with claim 1 , wherein said cannula tip is integrally formed with said cannula.

11. An inflow cannula tip in accordance with claim 1 , wherein said hard material comprises one of a biocompatible hard plastic, a biocompatible carbon material, and a biocompatible metal.

12. An inflow cannula tip in accordance with claim 11 , wherein said cannula tip comprises one of polyvinyl or polyurethane.

13. An inflow cannula tip in accordance with claim 11 , wherein said cannula tip comprises a titanium alloy.

14. An inflow cannula tip in accordance with claim 13 , wherein said cannula tip is adapted for use with one of a long term implantable left ventricular assist device or a long term implantable right ventricular assist device.

15. An inflow cannula tip in accordance with claim 13 , wherein said titanium alloy acts to prevent the formation of blood clots on said inlet portion.

16. An inflow cannula tip in accordance with claim 1 , wherein said cannula tip is coated with one of crosslinked proteins, a biodegradable polymer containing at least one of an anti-platelet, anti-thrombotic, and anti-coagulant drug, and a non-degradable polymer containing at least one of an anti-platelet, anti-thrombotic, and anti-coagulant drug.

17. An inflow cannula tip in accordance with claim 1 , wherein:

said cannula tip is subjected to a treatment comprising a biocompatible surface modification.

18. An inflow cannula tip in accordance with claim 1 , wherein said cannula tip is adapted for use with one of a pulsatile assist device or a non-pulsatile assist device.

19. An inflow cannula tip for use with a cardiac assist device, comprising:

a hollow cylindrical body having a first end adapted for connection to a cannula for an implantable cardiac assist device; and

an open-ended inlet portion at a second end of said body comprising two projections extending from said body and forming two gaps between said projections, the gaps being designed and adapted to prevent a suction condition when said cannula tip is in an implanted position and the open-ended inlet portion is in contact with an inner wall surface of an organ;

wherein:

the cannula tip is comprised of a hard material; and

said two gaps comprise a proximal gap and a distal gap, said distal gap having a smaller depth than said proximal gap.

20. An inflow cannula tip in accordance with claim 19 , wherein a ratio of a diameter of the inlet portion to the depth of the gaps is in a range of between approximately 1.5-3.5.

21. An inflow cannula tip in accordance with claim 19 , wherein:

the diameter of the inflow portion is approximately 0.625 inches;

the depth of the proximal gap is approximately 0.31 inches; and

the depth of the distal gap is approximately 0.21 inches.

22. An inflow cannula tip in accordance with claim 19 , wherein said cannula tip is adapted for use with a long term implantable right ventricular assist device.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 20, 2009
From: MIWATEC CO., LTD.
To: HITMAC (USA), INC.
Reel/Frame 022980/0798 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 25, 2006
From: NOSE, YUKIHIKO; SHINOHARA, TOSHIYUKI; WATANABE, KUNIYOSHI; MOTOMURA, TADASHI
To: MIWATEC CO., LTD.; BAYLOR COLLEGE OF MEDICINE
Reel/Frame 018345/0524 →
Continuity (3)
Continuation In Part 1065548900 · Sep 3, 2003
Provisional Application 6040988500 · Sep 10, 2002
Related Publication 20070049787A1 · Mar 1, 2007