IP Library Granted Patent US 9,801,987
Granted Patent B2
US 9,801,987 · App. 14/596,665 · Granted Oct 31, 2017

Bifurcated outflow cannulae

Inventors: Robert C. Farnan (Fort Lauderdale, FL); John P. Budris (Cheshire, CT)
Assignee: CircuLite, Inc.
A61M1/1008A61M1/10A61M1/122
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Quick Facts
Patent No.
US 9,801,987
App. No.
14/596,665
Granted
Oct 31, 2017
Kind
B2
Abstract

A bifurcated cannula for directing blood into the arterial system. The bifurcated cannula including an ingress channel and first and second egress channels. The first egress channel directs a first portion of the blood entering the bifurcated cannula into the arterial system in a first direction. The second egress channel directs a second portion of the blood entering the bifurcated cannula into the arterial system in a direction that opposes the first direction.

Claims (71)

1. A method of directing blood from a pump to the arterial system using a bifurcated cannula comprising an ingress channel and first and second egress channels, and first and second stent grafts having proximal and distal ends, the method comprising:

directing the blood from the pump into the ingress channel of the bifurcated cannula;

directing a first portion of the blood entering the bifurcated cannula from the ingress channel through the first egress channel;

directing a second portion of the blood entering the bifurcated cannula from the ingress channel through the second egress channel;

inserting the distal end of the first stent graft into the arterial system;

inserting the distal end of the second stent graft into the arterial system;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the arterial system;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the arterial system;

fluidicly coupling the proximal end of the first stent graft to the first egress channel;

fluidicly coupling the proximal end of the second stent graft to the second egress channel;

directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system;

directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system;

disengaging the first and second egress channels from the respective proximal ends of the first and second stent grafts; and

fluidicly coupling the first and second stent grafts such that the blood flowing in a first direction enters the first or second stent graft and flows into the other of the first or second stent graft in the first direction and then flows back into the arterial system in the first direction.

2. The method according to claim 1 , wherein directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system; and directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system comprises:

directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system in a first direction; and

directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system in a second direction that opposes the first direction.

3. The method according to claim 2 , wherein directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system in a first direction; and directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system in a second direction that opposes the first direction comprises:

directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system in a retrograde direction; and

directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system in a radial direction.

4. The method according to claim 3 , wherein directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system in a retrograde direction; and directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system in a radial direction comprises:

directing the first portion of the blood having a first volume from the first egress channel through the first stent graft into the arterial system in a retrograde direction; and

directing the second portion of the blood having a second volume from the second egress channel through the second stent graft into the arterial system in a radial direction,

wherein the first volume exceeds the second volume.

5. The method according to claim 1 , further comprising:

securing the proximal end of the first stent graft over an outer surface of the first egress channel; and

securing the proximal end of the second stent graft over an outer surface of the second egress channel.

6. The method according to claim 1 , further comprising:

directing the blood from the left atrium of a heart to the pump.

7. The method according to claim 1 , wherein inserting the distal end of the first stent graft into the arterial system;

inserting the distal end of the second stent graft into the arterial system;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the arterial system;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the arterial system;

directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system; and

directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system comprises:

inserting the distal end of the first stent graft into the right subclavian artery;

inserting the distal end of the second stent graft into the right subclavian artery;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the right subclavian artery;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the right subclavian artery;

directing the first portion of the blood from the first egress channel through the first stent graft into the right subclavian artery; and

directing the second portion of the blood from the second egress channel through the second stent graft into the right subclavian artery.

8. The method according to claim 1 , wherein inserting the distal end of the first stent graft into the arterial system;

inserting the distal end of the second stent graft into the arterial system;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the arterial system;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the arterial system;

directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system; and

directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system comprises:

inserting the distal end of the first stent graft into the aorta of a heart;

inserting the distal end of the second stent graft into the left subclavian artery;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the aorta of a heart;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the left subclavian artery;

directing the first portion of the blood from the first egress channel through the first stent graft into the aorta of a heart; and

directing the second portion of the blood from the second egress channel through the second stent graft into the left subclavian artery.

9. The method according to claim 1 , wherein directing the first portion of the blood from the first egress channel through the first stent graft into the arterial system; and directing the second portion of the blood from the second egress channel through the second stent graft into the arterial system comprises:

directing the first portion of the blood from the first egress channel having a first cross-sectional area through the first stent graft into the arterial system; and

directing the second portion of the blood from the second egress channel having a second cross-sectional area through the second stent graft into the arterial system, wherein the volume of first and second portions of the blood is determined by relative cross-sectional areas of each of the first and second egress channels.

10. The method according to claim 1 , further comprising:

reducing the cross-sectional area of at least one of the first or second egress channels using a flow selector.

11. A method of directing blood from a pump to the arterial system using a bifurcated cannula comprising an ingress channel and first and second egress channels, and first and second stent grafts having proximal and distal ends, the method comprising:

fluidicly coupling a first end of a flexible cannula body to the left side of a heart;

fluidicly coupling a second end of the flexible cannula body to the pump;

fluidicly coupling the pump to the ingress channel of the bifurcated cannula;

inserting the distal ends of the first and second stent grafts into the arterial system;

expanding the first stent graft to fluidicly couple the distal end of the first stent graft to the arterial system;

expanding the second stent graft to fluidicly couple the distal end of the second stent graft to the arterial system;

fluidicly coupling the proximal end of the first stent graft to the first egress channel;

fluidicly coupling the proximal end of the second stent graft to the second egress channel;

disengaging the first and second egress channels from the respective proximal ends of the first and second stent grafts; and

fluidicly coupling the first and second stent grafts such that the blood flowing in a first direction enters one of the first or second stent grafts and flows into the other of the first or second stent grafts in the first direction and then flows back into the arterial system in the first direction.

12. The method according to claim 11 , further comprising:

securing the first and second stent grafts over an outer surface of the respective first and second egress channels of the bifurcated cannula.

Assignments (1)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Feb 14, 2025
From: CIRCULITE, INC.; HEARTWARE, INC.; MEDTRONIC VASCULAR GALWAY UNLIMITED COMPANY; MEDTRONIC, INC.; WORLD HEART CORPORATION
To: BOSTON SCIENTIFIC SCIMED, INC.
Reel/Frame 070792/0670 →
Continuity (3)
Division 12860106 · Aug 20, 2010
Provisional Application 61259347 · Nov 9, 2009
Related Publication 20150133720A1 · May 14, 2015