IP Library › Granted Patent US 11,400,276
Granted Patent B2
US 11,400,276 · App. 17/478,344 · Granted Aug 2, 2022

Systems and methods for pump-assisted blood circulation

Inventors: Gopal K. Chopra (New York, NY); William Graham (Houston, TX); Bryan Lynch (Houston, TX); Jeffrey A. LaRose (Raleigh, NC)
Assignee: CardioDyme, Inc.
A61M60/812A61M60/117A61M60/178A61M60/237A61M60/422A61M60/806A61M60/818
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Quick Facts
Patent No.
US 11,400,276
App. No.
17/478,344
Granted
Aug 2, 2022
Kind
B2
Abstract

Disclosed are systems, devices, and methods that employ a pump to assist or support blood flow. An apparatus for pumping blood may include a pump housing having an outer wall disposed about a longitudinal pump axis, and having an upstream end and a downstream end; a blood flow straightener having a plurality of fins and positioned in the upstream end of the pump housing and secured to the pump housing by the plurality of fins; a diffuser having a plurality of diffuser fins and positioned in the downstream end of the pump housing and secured to the pump housing by the plurality of diffuser fins; and an impeller positioned between the blood flow straightener and the diffuser, and including a plurality of impeller blades. The apparatus may further include a pump drive configured to impart a rotational motion to the impeller by applying a magnetic field.

Claims (43)

1. An apparatus for pumping blood, the apparatus comprising:

a pump housing having an outer wall radially disposed about a longitudinal pump axis, the pump housing having an upstream end and a downstream end;

a blood flow straightener having a plurality of fins and positioned in the upstream end of the pump housing and secured to the pump housing by the plurality of fins;

a diffuser having a plurality of diffuser fins and positioned in the downstream end of the pump housing and secured to the pump housing by the plurality of diffuser fins;

an impeller positioned between the blood flow straightener and the diffuser within the pump housing, the impeller including a plurality of impeller blades; and

a pump drive positioned circumferentially about the impeller and configured to impart a rotational motion to the impeller by applying a magnetic field to the impeller;

wherein the impeller is supported by an upstream bearing that cooperates with an upstream bearing mount portion of the blood flow straightener and a downstream bearing that cooperates with a downstream bearing mount portion of the diffuser;

wherein the outer wall of the pump housing includes an externally threaded portion and a flanged portion, and wherein a tube stretcher is configured to modify a dimension of the pump housing by being threaded onto the externally threaded portion and abutting the flanged portion.

2. The apparatus of claim 1 , further comprising an outlet adapter coupled to the downstream end of the pump housing to direct the blood exiting the pump housing.

3. The apparatus of claim 1 , wherein the plurality of fins have a teardrop-shaped cross section with a curved upstream edge and a pointed downstream edge.

4. The apparatus of claim 1 , wherein the plurality of impeller blades includes a plurality of helically wound blades having a first pitch in an upstream portion of the impeller that is less than a second pitch at a downstream portion of the impeller.

5. The apparatus of claim 4 , wherein the plurality of impeller blades further includes a plurality of arcuate blades positioned between the plurality of helically wound blades on the downstream portion of the impeller, each arcuate blade extending along the longitudinal pump axis a distance less than a distance that each impeller blade extends along the longitudinal pump axis.

6. The apparatus of claim 1 , wherein the diffuser includes a conical end cap positioned downstream from the plurality of diffuser fins and having a pointed end.

7. The apparatus of claim 1 , further comprising:

a power source; and

a controller in communication with the power source;

wherein the pump drive includes a stator, and wherein the pump drive electrically connected to the power source and the controller to selectively provide power to the stator.

8. The apparatus of claim 7 , wherein the stator is integral with the pump housing.

9. The apparatus of claim 7 , wherein the stator includes a hinge and is configured to selectively engage the pump housing by articulating the hinge.

10. The apparatus of claim 7 , wherein the power source is a battery, and wherein the battery and the controller are configured to be detachably connected to a patient.

11. The apparatus of claim 7 , wherein the controller provides direct current to the stator and wherein the stator is a brushless type.

12. The apparatus of claim 9 , wherein the stator includes a stator housing and a stator core, and wherein articulating the hinge causes the stator to move with respect to the pump housing.

13. The apparatus of claim 12 , wherein the stator includes a first portion, a second portion, and the hinge having an open state and a closed state, wherein articulating the hinge between the open state and the closed state pivots the first portion with respect to the second portion to allow the stator to selectively engage the pump housing.

14. The apparatus of claim 12 , wherein the stator housing comprises a non-magnetic material, the stator core comprises a magnetic material, and the impeller includes one or more magnets.

15. The apparatus of claim 1 , wherein the dimension of the pump housing modified by the tube stretcher is an axial length of a portion of the pump housing between the externally threaded portion and the flanged portion.

16. The apparatus of claim 15 , wherein once the tube stretcher is threaded onto the externally threaded portion of the pump housing, one or more gaps between the impeller and the blood flow straightener or the diffuser are between 0.0025 and 0.025 mm.

17. The apparatus of claim 1 , wherein the flanged portion extends from the outer wall between the externally threaded portion and the downstream end.

18. An apparatus for pumping blood, the apparatus comprising:

a pump housing having an outer wall radially disposed about a longitudinal pump axis, the pump housing having an upstream end and a downstream end;

a blood flow straightener having a plurality of fins and positioned in the upstream end of the pump housing and secured to the pump housing;

a diffuser having a plurality of diffuser fins and positioned in the downstream end of the pump housing and secured to the pump housing;

an impeller positioned between the blood flow straightener and the diffuser within the pump housing, the impeller including a plurality of impeller blades; and

a pump drive positioned circumferentially about the impeller and configured to impart a rotational motion to the impeller by applying a magnetic field to the impeller;

wherein the outer wall of the pump housing includes an externally threaded portion and a flanged portion, and wherein a tube stretcher is configured to modify a dimension of the pump housing by being threaded onto the externally threaded portion and abutting the flanged portion.

19. The apparatus of claim 18 , wherein the dimension of the pump housing modified by the tube stretcher is an axial length of a portion of the pump housing between the externally threaded portion and the flanged portion.

20. An apparatus for pumping blood, the apparatus comprising:

a pump housing having an outer wall radially disposed about a longitudinal pump axis, the pump housing having an upstream end and a downstream end;

a front bearing mount positioned in the upstream end of the pump housing and secured to the pump housing;

a diffuser having a plurality of diffuser fins and positioned in the downstream end of the pump housing and secured to the pump housing;

an impeller positioned between the front bearing mount and the diffuser within the pump housing, the impeller including a plurality of impeller blades; and

a pump drive positioned circumferentially about the impeller and configured to impart a rotational motion to the impeller by applying a magnetic field to the impeller;

wherein the impeller is supported by an upstream bearing that cooperates with an upstream bearing portion of the front bearing mount;

wherein the outer wall of the pump housing includes an externally threaded portion and a flanged portion, and wherein a tube stretcher is configured to modify an axial length of a portion of the pump housing by being threaded onto the externally threaded portion and abutting the flanged portion.

Assignments (2)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Mar 12, 2026
From: CARDIODYME, INC.
To: CDX MEDICAL TECHNOLOGIES, LLC
Reel/Frame 074063/0905 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Aug 26, 2022
From: CHOPRA, GOPAL K.; GRAHAM, WILLIAM; LYNCH, BRYAN; LAROSE, JEFFREY A.
To: CARDIODYME, INC.
Reel/Frame 060909/0389 →
Continuity (2)
Provisional Application 63080509 · Sep 18, 2020
Related Publication 20220088369A1 · Mar 24, 2022
Cited By (10)
US 12,397,146 US 12,409,312 US 12,491,355 US 12,508,416 US 12,515,038 US 12,576,262 US 12,685,856 US 12,691,275 US 12,714,848 US 12,728,254