IP Library Granted Patent US 10,279,099
Granted Patent B2
US 10,279,099 · App. 15/817,453 · Granted May 7, 2019

Arteriovenous access valve system and process

Inventor: David L. Cull (Greenville, SC)
Assignee: DIAXAMED, LLC
A61M1/3655A61F2/06A61M39/227A61M39/228A61F2/2475A61M39/0208A61M2205/04
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Quick Facts
Patent No.
US 10,279,099
App. No.
15/817,453
Granted
May 7, 2019
Kind
B2
Abstract

An arteriovenous graft system is described. The arteriovenous graft system includes an arteriovenous graft that is suited for use during hemodialysis. In order to minimize or prevent arterial steal, at least one valve device is positioned at the arterial end of the arteriovenous graft. In one embodiment, for instance, the arteriovenous graft systems includes a first valve device positioned at the arterial end and a second valve device positioned at the venous end. In one embodiment, the valve devices may include an inflatable balloon that, when inflated, constricts and closes off the arteriovenous graft. If desired, a single actuator can be used to open and close both valve devices.

Claims (26)

1. A subcutaneous arteriovenous graft system, comprising:

an arteriovenous graft including an arterial end and an opposite venous end;

a valve device positioned at or adjacent to the arterial end or the venous end of the arteriovenous graft, the valve device including a valve member provided in operative association with a fluid conduit, the valve member comprising an inflatable balloon; and

an actuator configured to actuate the valve member between an opened state, at which the valve member is configured to allow a flow of blood through the fluid conduit, and a closed state, at which the valve member is configured to reduce the flow of blood through the fluid conduit;

wherein, when the valve member is transitioned to the opened state, the valve member is substantially radially aligned with an inner surface of the fluid conduit.

2. The subcutaneous arteriovenous graft system claim 1 , wherein the valve member comprises a thinner wall than the fluid conduit.

3. The subcutaneous arteriovenous graft system of claim 1 , wherein the valve device corresponds to a first valve device positioned at or adjacent to the arterial end of the arteriovenous graft, further comprising a second valve device positioned at or adjacent to the venous end of the arteriovenous graft, the second valve device including a second valve member configured to be actuated between an opened state and a closed state.

4. The subcutaneous arteriovenous graft system of claim 3 , wherein the actuator corresponds to a first actuator configured to actuate the first valve device between the opened and closed states, further comprising a second actuator configured to actuate the second valve device between the opened and closed states.

5. The subcutaneous arteriovenous graft system of claim 3 , wherein the first valve device is configured to restrict or stop fluid flow at higher pressures than the second valve device.

6. The subcutaneous arteriovenous graft system of claim 5 , wherein the first valve device comprises the inflatable balloon and the second valve device comprises a check valve.

7. The subcutaneous arteriovenous graft system of claim 1 , wherein a surface of the valve member is flush with the inner surface of the fluid conduit when the valve member is transitioned to the opened state.

8. The subcutaneous arteriovenous graft system of claim 1 , wherein a surface of the inflatable balloon is flush with the inner surface of the fluid conduit when the inflatable balloon is transitioned to the u-inflated state.

9. A subcutaneous arteriovenous graft system, comprising:

an arteriovenous graft including an arterial end and an opposite venous end;

a valve device positioned at or adjacent to one of the arterial end or the venous end of the arteriovenous graft, the valve device including an inflatable balloon provided in operative association with a fluid conduit; and

an actuator in fluid communication with the inflatable balloon, the actuator being configured to actuate the inflatable balloon between an un-inflated state, at which the inflatable balloon is configured to allow a flow of blood through the fluid conduit, and an inflated state, at which the inflatable balloon is configured to prevent the flow of blood through the fluid conduit;

wherein, when the inflatable balloon is transitioned to the un-inflated state, the inflatable balloon deflates radially relative to the fluid conduit such that the inflatable balloon is substantially radially aligned within an inner surface of the fluid conduit.

10. The subcutaneous arteriovenous graft system of claim 9 , wherein the inner surface of the fluid conduit defines an outer flow boundary for blood flowing through the fluid conduit.

11. The subcutaneous arteriovenous graft system of claim 9 , wherein the fluid conduit is formed integrally with the arteriovenous graft.

12. The subcutaneous arteriovenous graft system of claim 9 , wherein the valve device is positioned at or adjacent to the arterial end of the arteriovenous graft, further comprising a second valve device positioned at or adjacent to the venous end of the arteriovenous graft, the second valve device including a second inflatable balloon configured to be actuated between an inflated state and an u-inflated stated.

13. The subcutaneous arteriovenous graft system of claim 12 , wherein the first valve device is configured to restrict or stop fluid flow at higher pressures than the second valve device.

14. The subcutaneous arteriovenous graft system of claim 9 , wherein a separate flow tube is coupled between the actuator and the inflatable balloon for transporting fluid there between.

15. The subcutaneous arteriovenous graft system of claim 9 , wherein:

the fluid conduit at least partially forms an inner sleeve of the valve device and the valve device further comprises an outer sleeve surrounding the inner sleeve;

a discrete area of the inner sleeve is configured to form the inflatable balloon; and

an outer perimeter of the inner sleeve is secured to the inner perimeter outer sleeve around a substantial portion of the outer perimeter of the inner sleeve excluding the discrete area.

Continuity (4)
Continuation 14340763 · Jul 25, 2014
Continuation 13442448 · Apr 9, 2012
Continuation 11807479 · May 29, 2007
Related Publication 20180085513A1 · Mar 29, 2018