IP Library › Granted Patent US 12,171,994
Granted Patent B2
US 12,171,994 · App. 17/016,961 · Granted Dec 24, 2024

Reduced thrombosis blood pump with washout bearing

Inventors: Travis J. Schauer (Rockford, MN); Benjamin Breidall (Eden Prairie, MN); Daniel H. VanCamp (Elk River, MN)
Assignee: Boston Scientific Scimed, Inc.
A61M60/825A61M60/422A61M60/148
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Quick Facts
Patent No.
US 12,171,994
App. No.
17/016,961
Granted
Dec 24, 2024
Kind
B2
Abstract

A bearing assembly is configured to retain an end of an impeller of a blood pump and includes a thrust plate having a distal-facing surface and an impeller bearing surface configured to be disposed adjacent the distal-facing surface such that a gap is defined between the distal-facing surface of the thrust plate and the impeller bearing surface. The impeller bearing surface includes at least one washout blade disposed thereon and configured to facilitate blood flow through the gap.

Claims (34)

1. A blood pump, comprising:

a housing;

an impeller assembly disposed within the housing, the impeller assembly comprising:

a proximal-facing surface;

a drive shaft being rotatable relative to the housing, the drive shaft comprising a proximal-facing bearing surface;

an impeller coupled to and configured to rotate with the drive shaft relative to the housing:

a motor configured to drive the drive shaft and the impeller; and

a thrust plate disposed adjacent the motor, the thrust plate having a distal-facing surface and being in contact with the proximal-facing bearing surface of the drive shaft,

wherein the proximal-facing surface of the impeller assembly is disposed adjacent the distal-facing surface of the thrust plate such that a gap is defined between the proximal-facing surface of the impeller assembly and the distal-facing surface of the thrust plate, and the proximal-facing surface of the impeller assembly has disposed thereon at least one washout blade configured to facilitate blood flow through the gap.

2. The blood pump of claim 1 , wherein the at least one washout blade comprises two or more washout blades.

3. The blood pump of claim 1 , wherein the at least one washout blade extends radially outward.

4. The blood pump of claim 1 , wherein the proximal-facing surface of the impeller assembly comprises a proximal surface of a magnet cover that is configured to be disposed over at least a proximal surface of a rotor magnet.

5. The blood pump of claim 1 , wherein a height of the at least one washout blade, comprising a distance from the proximal-facing surface of the impeller assembly to a proximal edge of the at least one washout blade, is approximately half the width of the gap.

6. The blood pump of claim 1 , wherein the bearing surface of the drive shaft is a convex surface.

7. The blood pump of claim 1 , wherein the proximal-facing bearing surface of the drive shaft is in direct rotational contact with the distal-facing surface of the thrust plate.

8. The blood pump of claim 1 , wherein the impeller assembly is retained within the housing by a proximal bearing assembly and a distal bearing assembly, and the impeller assembly is rotatable relative to the proximal bearing assembly and the distal bearing assembly.

9. The blood pump of claim 8 , wherein the proximal bearing assembly includes the thrust plate.

10. The blood pump of claim 8 , wherein the proximal bearing assembly is adjacent a proximal end of the drive shaft and the distal bearing assembly is adjacent a distal end of the drive shaft.

11. A blood pump, comprising:

a housing;

an impeller assembly disposed within the housing, the impeller assembly comprising: a proximal-facing surface;

a drive shaft being rotatable relative to the housing, the drive shaft comprising a proximal-facing bearing surface;

an impeller coupled to and configured to rotate with the drive shaft relative to the housing:

a motor configured to drive the drive shaft and the impeller; and

a thrust plate disposed adjacent the motor, the thrust plate having a distal-facing surface and being in contact with the proximal-facing bearing surface of the drive shaft,

wherein the proximal-facing surface of the impeller assembly is disposed adjacent the distal-facing surface of the thrust plate such that a gap is defined between the proximal-facing surface of the impeller assembly and the distal-facing surface of the thrust plate, and the proximal-facing surface of the impeller assembly has disposed thereon two or more washout blades configured to facilitate blood flow through the gap, wherein the width of the gap is configured to maximize the blood flow through the gap.

12. The blood pump of claim 11 , wherein the two or more washout blades extend radially outward.

13. The blood pump of claim 11 , wherein the proximal-facing surface of the impeller assembly comprises a proximal surface of a magnet cover that is configured to be disposed over at least a proximal surface of a rotor magnet.

14. The blood pump of claim 11 , wherein a height of the two or more washout blades, comprising a distance from the proximal-facing surface of the impeller assembly to a proximal edge of the two or more washout blades, is approximately half the width of the gap.

15. The blood pump of claim 11 , wherein the bearing surface of the drive shaft is a convex surface.

16. The blood pump of claim 11 , wherein the proximal-facing bearing surface of the drive shaft is in direct rotational contact with the distal-facing surface of the thrust plate.

17. The blood pump of claim 11 , wherein the impeller assembly is retained within the housing by a proximal bearing assembly and a distal bearing assembly, and the impeller assembly is rotatable relative to the proximal bearing assembly and the distal bearing assembly.

18. The blood pump of claim 17 , wherein the proximal bearing assembly includes the thrust plate.

19. The blood pump of claim 17 , wherein the proximal bearing assembly is adjacent a proximal end of the drive shaft and the distal bearing assembly is adjacent a distal end of the drive shaft.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 19, 2022
From: SCHAUER, TRAVIS J.; BREIDALL, BENJAMIN; VANCAMP, DANIEL H.
To: BOSTON SCIENTIFIC SCIMED INC.
Reel/Frame 062140/0672 →
Continuity (2)
Provisional Application 62898953 · Sep 11, 2019
Related Publication 20210069393A1 · Mar 11, 2021