IP Library Granted Patent US 11,097,092
Granted Patent B2
US 11,097,092 · App. 16/087,546 · Granted Aug 24, 2021

Blood pump

Inventors: Thorsten Siess (Wuerselen, DE); Jimpo Wang (Aachen, DE); Gerd Spanier (Aachen, DE)
Assignee: ABIOMED EUROPE GMBH
A61M60/419A61M60/135A61M60/422A61M60/824A61M60/205
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Quick Facts
Patent No.
US 11,097,092
App. No.
16/087,546
Granted
Aug 24, 2021
Kind
B2
Abstract

An intravascular blood pump comprises a pump casing having a blood flow inlet and a blood flow outlet, and an impeller arranged in said pump casing so as to be rotatable about an axis of rotation, wherein the impeller has blades sized and shaped for conveying blood from the blood flow inlet to the blood flow outlet. The blood pump further comprises a drive unit for rotating the impeller, the drive unit comprising a plurality of posts arranged about the axis of rotation, wherein each of the posts includes a shaft portion and a head portion. Coil windings around the posts are sequentially controllable so as to create a rotating magnetic field. The drive unit further comprises a back plate which engages ends of the shaft portions of the posts opposite the head portions.

Claims (43)

1. An intravascular blood pump for percutaneous insertion into a patient's blood vessel, comprising:

a pump casing having a blood flow inlet and a blood flow outlet,

an impeller arranged in said pump casing so as to be rotatable about an axis of rotation, the impeller having blades sized and shaped for conveying blood from the blood flow inlet to the blood flow outlet, and

a drive unit for rotating the impeller, the drive unit comprising a plurality of posts arranged about the axis of rotation, wherein each of the posts includes a shaft portion and a head portion, with each of the head portions pointing towards the impeller,

wherein a coil winding is disposed about the shaft portion of each of the posts, each of the coil windings being sequentially controllable so as to create a rotating magnetic field,

wherein the impeller comprises at least one magnet arranged to interact with the rotating magnetic field so as to cause rotation of the impeller,

wherein the drive unit further comprises a back plate which engages ends of the shaft portions of the posts opposite the head portions, and

wherein the intravascular blood pump includes an outer diameter selected to enable percutaneous insertion of the intravascular blood pump into the patient's blood vessel.

2. The intravascular blood pump of claim 1 , wherein the head portion of at least one of the posts has a top surface inclined at an angle relative to a plane perpendicular to the axis of rotation, wherein the angle is greater than 0°.

3. The intravascular blood pump of claim 2 , wherein a distance between the axis of rotation and a center of said inclined surface in a radial direction is less than or equal to a distance between the axis of rotation and a center of a cross-sectional area of the shaft portion of the respective post in a radial direction.

4. The intravascular blood pump of claim 2 , wherein at least one of the head portions is triangular in cross-section along a plane including the axis of rotation.

5. The intravascular blood pump of claim 2 , wherein the inclined surfaces of the head portions form a conical surface.

6. The intravascular blood pump of claim 5 , wherein the at least one magnet of the impeller defines a conical recess corresponding in size and shape to the conical surface formed by the head portions of the posts.

7. The intravascular blood pump of claim 2 , wherein the at least one magnet of the impeller has a surface facing the head portions of the posts and being inclined at an angle corresponding to the angle of the inclined surface of at least one of the head portions.

8. The intravascular blood pump of claim 1 , wherein the impeller comprises at least two of the magnets.

9. The intravascular blood pump of claim 8 , wherein the magnets are separated by radially extending gaps.

10. The intravascular blood pump of claim 1 , wherein the drive unit comprises at least two of the posts.

11. The intravascular blood pump of claim 1 , wherein each of the head portions has a larger cross-sectional dimension than the respective shaft portion in a plane perpendicular to the axis of rotation.

12. The intravascular blood pump of claim 11 , wherein the respective coil winding does not extend beyond the head portion at least in a radial direction.

13. The intravascular blood pump of claim 1 , wherein the back plate comprises a plurality of apertures arranged about the axis of rotation and receiving said ends of the shaft portions.

14. The intravascular blood pump of claim 1 , further comprising a housing surrounding the drive unit.

15. The intravascular blood pump of claim 1 , wherein the drive unit has a central opening extending along the axis of rotation.

16. The intravascular blood pump of claim 15 , wherein the central opening is for receiving an elongate pin, with an axial end surface of the pin forming a bearing surface for the impeller.

17. The intravascular blood pump of claim 1 , wherein the drive unit is disposed inside the pump casing.

18. The intravascular blood pump of claim 1 , wherein a magnetically insulating material is disposed between the head portions of adjacent posts.

19. The intravascular blood pump of claim 2 , wherein the angle is between about 30° and 60°.

20. The intravascular blood pump of claim 19 , wherein the inclined surfaces face radially outwards.

21. The intravascular blood pump of claim 2 , wherein the angle is about 45°.

22. The intravascular blood pump of claim 21 , wherein the inclined surfaces face radially outwards.

23. The intravascular blood pump of claim 2 , wherein the inclined surfaces face radially outwards.

24. The intravascular blood pump of claim 1 , wherein the impeller comprises at least four magnets.

25. The intravascular blood pump of claim 24 , wherein the magnets are separated by radially extending gaps.

26. The intravascular blood pump of claim 1 , wherein the impeller comprises six magnets.

27. The intravascular blood pump of claim 26 , wherein the magnets are separated by radially extending gaps.

28. The intravascular blood pump of claim 1 , wherein the impeller comprises eight magnets.

29. The intravascular blood pump of claim 28 , wherein the magnets are separated by radially extending gaps.

30. The intravascular blood pump of claim 1 , wherein the drive unit comprises at least four of the posts.

31. The intravascular blood pump of claim 1 , wherein the drive unit comprises six of the posts.

32. The intravascular blood pump of claim 1 , wherein the drive unit comprises eight of the posts.

33. The intravascular blood pump of claim 1 , wherein the outer diameter of the intravascular blood pump has a length in a range of 4 millimeters to 10 millimeters.

34. The intravascular blood pump of claim 1 , wherein the back plate includes a diameter of a length in a range of 3 millimeters and 9 millimeters.

35. The intravascular blood pump of claim 1 , wherein the plurality of posts are arranged about the axis of rotation such that the plurality of posts include a diameter of a length in a range of 3 millimeters and 8 millimeters.

36. The intravascular blood pump of claim 1 , wherein the head portion of each posts is disposed adjacent to the at least one magnet of the impeller to magnetically couple the drive unit to the impeller.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Jul 18, 2023
From: SIESS, THORSTEN; WANG, JIMPO; SPANIER, GERD
To: ABIOMED EUROPE GMBH
Reel/Frame 064299/0401 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Sep 24, 2018
From: SIESS, THORSTEN; WANG, JIMPO; SPANIER, GERD
To: ABIOMED EUROPE GMBH
Reel/Frame 046950/0898 →
Priority Claims (1)
EP 16161941 · Mar 23, 2016 · regional
Continuity (1)
Related Publication 20190298902A1 · Oct 3, 2019
Cited By (19)
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