US2008300528A1PendingUtilityA1

Arteriovenous access valve system and process

Assignee: CREATIVASC MEDICAL LLCPriority: May 29, 2007Filed: May 29, 2007Published: Dec 4, 2008
Est. expiryMay 29, 2027(~0.9 yrs left)· nominal 20-yr term from priority
Inventors:David L. Cull
A61M 39/228A61M 39/0208A61M 2205/04A61F 2/06A61M 39/227A61F 2/2475A61M 1/3655
49
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Claims

Abstract

An arteriovenous graft system is described. The arteriovenous graft system includes an arteriovenous graft that is well 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 system 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

exact text as granted — not AI-modified
1 . A subcutaneous arteriovenous graft system comprising:
 an arteriovenous graft having an arterial end and an opposite venous end;   a first valve device positioned at the arterial end of the arteriovenous graft and a second valve device positioned at the venous end of the arteriovenous graft; and   a single actuator in communication with both the first valve device and the second valve device, the actuator being configured to open and close the valve devices simultaneously.   
   
   
       2 . A system as defined in  claim 1 , wherein each valve device comprises an inner sleeve positioned within an outer sleeve, the inner sleeve being attached to the outer sleeve so as to define a discrete area, the discrete area being in fluid communication with a fluid delivery device wherein, when fluid is fed in between the inner sleeve and the outer sleeve, the discrete area inflates and causes the restriction of blood flow through the arteriovenous graft. 
   
   
       3 . A system as defined in  claim 1 , wherein the single actuator comprises a fluid injection port that is in fluid communication with the first valve device and the second valve device. 
   
   
       4 . A system as defined in  claim 2 , wherein the single actuator comprises a fluid injection port that is in fluid communication with the first valve device and the second valve device. 
   
   
       5 . A system as defined in  claim 2 , wherein the discrete area of the first valve device and the discrete area of the second valve device have a circular or a substantially circular shape. 
   
   
       6 . A system as defined in  claim 2 , wherein, when inflated, the balloons of each valve device have a spherical or substantially spherical shape. 
   
   
       7 . A system as defined in  claim 2 , wherein the outer sleeve of each valve device is more rigid than the inner sleeve and wherein the outer sleeve maintains its shape when the respective balloon is inflated. 
   
   
       8 . A system as defined in  claim 2 , wherein the arteriovenous graft is positioned within the inner sleeve of the balloon of the first valve device and the balloon of the second valve device. 
   
   
       9 . A system as defined in  claim 2 , wherein the actuator comprises a piston that pumps a fluid to the discrete area of each valve device. 
   
   
       10 . A system as defined in  claim 1 , wherein the actuator comprises a fluid delivery device that delivers a fluid to each valve device for opening and closing the valve devices. 
   
   
       11 . A system as defined in  claim 10 , wherein the fluid comprises a liquid. 
   
   
       12 . A system as defined in  claim 10 , wherein the fluid comprises a gas. 
   
   
       13 . A hemodialysis method comprising:
 subcutaneously implanting an arteriovenous graft system in a patient, the arteriovenous graft system including an arteriovenous graft having a first end that is connected to an artery and a second end that is connected to a vein, the arteriovenous graft system further including a first valve device positioned at the arterial end of the arteriovenous graft and a second valve device positioned at the venous end of the arteriovenous graft, the arteriovenous graft system further including a single actuator in communication with both the first valve device and the second valve device;   opening the first and second valve devices simultaneously using the single actuator causing blood to flow through the arteriovenous graft;   inserting first and second hypodermic needles into the arteriovenous graft, the hypodermic needles being in fluid communication with a hemodialysis machine;   circulating blood through the hemodialysis machine; and   after a sufficient amount of blood has been circulated through the hemodialysis machine, closing the first and second valve devices using the single actuator.   
   
   
       14 . A method as defined in  claim 13 , further comprising the step of flushing the arteriovenous graft after the first and second valve devices have been closed. 
   
   
       15 . A method as defined in  claim 14 , wherein the arteriovenous graft is flushed by injecting a cleaning fluid into the arteriovenous graft and then removing the fluid. 
   
   
       16 . A method as defined in  claim 13 , wherein each valve device comprises an inner sleeve positioned within an outer sleeve, the inner sleeve being attached to the outer sleeve so as to define a discrete area, the discrete area being in fluid communication with a fluid delivery device wherein, when fluid is fed in between the inner sleeve and the outer sleeve, the discrete area inflates and causes the restriction of blood flow through the arteriovenous graft. 
   
   
       17 . A method as defined in  claim 13 , wherein the single actuator comprises a fluid injection port that is in fluid communication with the first valve device and the second valve device. 
   
   
       18 . A method as defined in  claim 16 , wherein the discrete area of the first valve device and the discrete area of the second valve device have a circular or a substantially circular shape. 
   
   
       19 . A method as defined in  claim 16 , wherein the actuator comprises a piston that pumps a fluid to the discrete area of each valve device. 
   
   
       20 . A method as defined in  claim 13 , wherein the actuator comprises a fluid delivery device that delivers a fluid to each valve device for opening and closing the valve devices.

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