IP Library Granted Patent US 8,251,886
Granted Patent B2
US 8,251,886 · App. 12/181,141 · Granted Aug 28, 2012

Dual-pulsation bi-ventricular assist device

Assignee: National Cheng Kung University
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Quick Facts
Patent No.
US 8,251,886
App. No.
12/181,141
Granted
Aug 28, 2012
Kind
B2
Abstract

A ventricular assist device is disclosed which comprises a sac for wrapping around a portion of a heart, the sac having one or more inflatable chambers for compressing the heart when the chambers being inflated and a blood outlet made to an aorta, the blood outlet being the sole opening in the human blood path in the vicinity of heart, wherein during a systolic phase the inflatable chambers inflate while blood flows out of the aorta through the blood outlet, and during a diastolic phase the inflatable chambers deflate while blood flows into the aorta through the blood outlet.

Claims (21)

1. A ventricular assist device comprising:

a sac wrapped around a portion of a heart, the sac having at least one inflatable chamber for compressing a patient's heart responsive to inflation of said inflatable chamber;

a driver fluidly coupled to said inflatable chamber of said sac and inflating said inflatable chamber in correspondence with a signal representative of a cardiac rhythm of the patient;

a blood pump fluidly coupled to said driver for periodically displacing blood therefrom responsive to fluid being directed thereto from said driver, said blood pump having a first compartment from which blood is displaced; and

a manifold having a first pathway and a second pathway intersecting with each other at an angle, said first pathway being implanted into an aorta of the patient for aortic blood flow therethrough and said second pathway being coupled to a blood inlet-outlet port in fluid communication with said first compartment of said blood pump,

wherein during a systolic phase said inflatable chamber inflates and blood flows into said first compartment from the patient's aorta through the blood inlet-outlet port, and during a diastolic phase said inflatable chamber deflates and said blood pump displaces blood from said first compartment into the patient's aorta through the blood inlet-outlet port.

2. The ventricular assist device of claim 1 , wherein said sac comprises an outer shell with a contour substantially conforming to a contour of the patient's heart in which said ventricular assist device is applied to.

3. The ventricular assist device of claim 2 , wherein said sac further comprises an elastic diaphragm having a contour similar to said contour of said outer shell, said elastic diaphragm is attached to a rim of an inner surface of said outer shell and covering said inflatable chamber.

4. The ventricular assist device of claim 1 , wherein said inflatable chamber is placed substantially on ventricular free walls of the patient's heart.

5. The ventricular assist device of claim 1 , wherein said inflatable chamber is inflated by a medium selected from a group consisting of liquid and gas.

6. The ventricular assist device of claim 1 , wherein said manifold is valveless.

7. The ventricular assist device of claim 1 , wherein said manifold is made of biocompatible material selected from the group consisting of metal and elastic polymer.

8. The ventricular assist device of claim 1 , wherein said first pathway of said manifold comprises a wall with a wall thickness gradually decreasing toward a first end and a second end of said first pathway.

9. The ventricular assist device of claim 1 , wherein a wall of said manifold is perforated along said first pathway.

10. The ventricular assist device of claim 1 , wherein a wall of said manifold is textured along said first pathway.

11. The ventricular assist device of claim 1 , wherein both said first pathway and the second pathway of the manifold have a substantially circular cross-sectional contour.

12. The ventricular assist device of claim 1 , wherein said first compartment of said blood pump has a volume that varies responsive to an output of said driver, said volume increasing during the systolic phase and decreasing during the diastolic phase.

13. The ventricular assist device of claim 12 , wherein the blood pump further comprises a second compartment fluidly coupled to said driver and an outer shell, said outer shell enclosing both said first compartment and said second compartment, said shell having a substantially constant volume during both the systolic phase and the diastolic phase, said blood pump including an elastic membrane separating said first compartment and said second compartment, said second compartment having a volume that decreases during the systolic phase and increases during the diastolic phase.

14. The ventricular assist device of claim 13 , wherein said second compartment is substantially filled with a fluid medium, said medium being driven out of and into said second compartment during the systolic phase and the diastolic phase, respectively.

15. The ventricular assist device of claim 14 , wherein said medium is selected from the group consisting of liquid and gas.

16. The ventricular assist device of claim 15 , wherein each of said first compartment and said second compartment respectively have at least one de-airing opening.

Assignments (4)
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 4, 2019
From: 3R INTERNATIONAL CO., LTD.
To: 3R LIFE SCIENCES CORPORATION
Reel/Frame 051170/0412 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 13, 2016
From: 3R LIFE SCIENCES TAIWAN LTD.
To: 3R INTERNATIONAL CO., LTD.
Reel/Frame 038701/0282 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded May 7, 2015
From: NATIONAL CHENG KUNG UNIVERSITY
To: 3R LIFE SCIENCES TAIWAN LTD.
Reel/Frame 035582/0418 →
ASSIGNMENT OF ASSIGNOR'S INTEREST Recorded Dec 29, 2008
From: LU, PONG-JEU; LIN, PAO-YEN; LIN, JIIN-HUEY CHERN; JU, CHIEN-PING
To: NATIONAL CHENG KUNG UNIVERSITY
Reel/Frame 022036/0759 →
Continuity (2)
Provisional Application 60763143 · Jan 30, 2006
Related Publication 20080300447A1 · Dec 4, 2008