IP Library Granted Patent US 11,273,300
Granted Patent B2
US 11,273,300 · App. 16/143,984 · Granted Mar 15, 2022

Magnetically suspended blood driving piston circulatory assist device

Inventor: David A. Schafir (Miami Shores, FL)
Assignee: HEARTWARE, INC.
A61M60/258A61M60/148A61M60/40A61M60/50A61M60/894A61M60/562A61M60/892A61M2205/3334F04B35/045
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Quick Facts
Patent No.
US 11,273,300
App. No.
16/143,984
Granted
Mar 15, 2022
Kind
B2
Abstract

A pulsatile blood pump including a chamber having an upstream portion, a downstream portion, and a wall coupling the upstream portion to the downstream portion, the upstream portion defining an inlet sized to fit within a ventricle of a heart, the downstream portion defining an outlet, and the wall defining a bore; a piston disposed within the bore of the wall, the piston including a first side in continuous fluid communication with the ventricle of the heart when the inlet is within the ventricle of the heart and defining a travel path within the bore including an upstream direction toward the inlet and a downstream direction toward the outlet; and a valve coupled to the piston and defining a one-way fluid flow path within the chamber through the first side of the piston in the downstream direction.

Claims (33)

1. A pulsatile blood pump comprising:

a housing, the housing including:

a chamber defined within the housing and including an upstream portion, a downstream portion, and a wall coupling the upstream portion to the downstream portion, the upstream portion defining an inlet sized to fit within a ventricle of a heart, the downstream portion defining an outlet, and the wall defining a bore;

a piston disposed within the bore of the wall, the piston including a first side and a second side opposite the first side, the first side being in continuous fluid communication with the ventricle of the heart when the inlet is within the ventricle of the heart and defining a travel path within the bore including an upstream direction toward the inlet and a downstream direction toward the outlet, the piston further defining an aperture extending between the first side and the second side of the piston, the second side including a first face facing the upstream end and a second face facing the downstream end;

a valve integrated with and downstream to the second face of the second side of the piston and defining a one-way fluid flow path within the chamber in the downstream direction toward the outlet; and

a plurality of magnets hermetically sealed within the wall of the piston and perpendicular to the second side, the plurality of magnets being circumferentially spaced apart from each other around a circumference of the piston.

2. The pulsatile blood pump of claim 1 , wherein the chamber defines a longitudinal axis extending from the upstream portion through the downstream portion, the piston and the plurality of magnets being entirely movable along the longitudinal axis in the upstream direction toward the inlet when the valve is in an open configuration.

3. The pulsatile blood pump of claim 2 , wherein the piston travels in the downstream direction toward the outlet when the valve is in a closed configuration.

4. The pulsatile blood pump of claim 1 , further comprising a plurality of stator coils coupled to the chamber, and wherein the plurality of magnets are in communication with the plurality of stator coils.

5. The pulsatile blood pump of claim 4 , wherein the plurality of stator coils are hermetically sealed within the wall of the chamber.

6. The pulsatile blood pump of claim 1 , wherein the inlet is sized to fit within the ventricle of the heart at an apex of the heart.

7. The pulsatile blood pump of claim 1 , wherein the piston and the wall of the chamber define a gap therebetween.

8. A pulsatile blood pump comprising:

a housing, the housing including:

a chamber defined within the housing and including an upstream portion, a downstream portion, and a longitudinal axis defined from the upstream portion through the downstream portion, the chamber defining an inlet sized to fit within a ventricle of a heart and an outlet opposite the inlet;

a magnetically suspended piston disposed within the chamber, the piston including a first side and a second side opposite the first side, the first side being in continuous fluid communication with the ventricle of the heart when the inlet is within the ventricle of the heart and defining a travel path within the chamber between the inlet and the outlet of the chamber, the first side including a first face facing the upstream portion and the second side including a second face facing the downstream portion;

a check valve integrated with and downstream from the second face of the second side of the piston, the valve having an open configuration including the valve defining a fluid flow path within the chamber in a downstream direction from the inlet to the outlet and a closed configuration including the valve obstructing a fluid from traveling from the outlet toward the inlet, the piston further defining an aperture and the fluid flow path being through the aperture and the valve;

a plurality of magnets hermetically sealed within a wall of the piston and perpendicular to the second side, the plurality of magnets being circumferentially spaced apart from each other around a circumference of the piston; and

the piston and the plurality of magnets being entirely movable along the longitudinal axis between the upstream portion and the downstream portion.

9. The pulsatile blood pump of claim 8 , wherein the valve is a one-way valve and the fluid flow path is a one-way fluid flow path from the inlet to the outlet through the valve.

10. The pulsatile blood pump of claim 8 , further comprising a plurality of stator coils coupled to the chamber, the plurality of magnets being in communication with the plurality of stator coils.

11. The pulsatile blood pump of claim 10 , wherein the chamber defines a wall, the wall of the chamber including the plurality of stator coils hermetically sealed.

12. The pulsatile blood pump of claim 11 , wherein the piston and the wall of the chamber define a gap therebetween.

13. The pulsatile blood pump of claim 11 , wherein the plurality of stator coils and the plurality of magnets define an alternating magnetic field for cyclical movement of the piston within the chamber.

14. The pulsatile blood pump of claim 13 , wherein the cyclical movement of the piston is synchronized with a cardiac cycle of the heart.

15. A pulsatile blood pump comprising:

a housing, the housing including:

a chamber defined within the housing and including an upstream portion, a downstream portion, a longitudinal axis extending from the upstream portion through the downstream portion, and a wall coupling the upstream portion to the downstream portion, the upstream portion defining an inlet sized to fit within a ventricle of a heart, the downstream portion defining an outlet, and the wall defining a bore;

a piston disposed within the bore of the wall and defining a travel path including an upstream direction toward the inlet and a downstream direction toward the outlet, the piston including a first side, a second side opposite the first side, and a wall coupling the first side and the second side of the piston to each other, the first side being in continuous fluid communication with the ventricle of the heart when the inlet is within the ventricle of the heart, the piston further defining an aperture extending between the first side and the second side of the piston, the first side including a first face facing the upstream portion and the second side including a second face facing the downstream portion;

a check valve integrated with and downstream to the second face of the second side of the piston and defining a one-way fluid flow path within the chamber in the downstream direction toward the outlet;

a plurality of stator coils hermetically sealed within the wall of the chamber;

a plurality of magnets hermetically sealed within the wall of the piston and perpendicular to the second side, the plurality of magnets being circumferentially spaced apart from each other around a circumference of the piston; and

the piston and the plurality of magnets being entirely movable along the longitudinal axis between the upstream portion and the downstream portion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 22, 2024
From: HEARTWARE, INC.
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 069433/0771 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Nov 1, 2018
From: SCHAFIR, DAVID
To: HEARTWARE, INC.
Reel/Frame 047379/0709 →
Continuity (2)
Provisional Application 62567887 · Oct 4, 2017
Related Publication 20190099533A1 · Apr 4, 2019
Cited By (14)
US 12,194,287 US 12,201,823 US 12,263,333 US 12,383,727 US 12,390,633 US 12,447,327 US 12,465,744 US 12,478,775 US 12,478,776 US 12,515,036 US 12,523,228 US 12,589,237 US 12,589,238 US 12,667,714