Hemodialysis Graft Resistance Adjustment Device

Author:

Hopkins Brandon J.1,Wu Huayin1,Marks William H.1,Quan Qimin1,Kesner Samuel1,Ozaki C. Keith2,Walsh Conor1

Affiliation:

1. School of Engineering and Applied Sciences, Harvard University, Cambridge, MA, 02138

2. Department of Vascular and Endovascular Surgery, Brigham and Women’s Hospital, Boston, MA, 02115

Abstract

Up to eight percent of patients develop steal syndrome after prosthetic dialysis access graft placement, which is characterized by low blood flow to the hand. Steal syndrome results in a cold hand, pain, and in extreme cases, loss of function and tissue damage. A practical and easy way of adjusting the fluidic resistance in a graft to attenuate the risk of steal physiology would greatly benefit both surgeons and patients. This paper describes the design and development of a device that can be attached to a dialysis access graft at the time of surgical implantation to enable providers to externally adjust the resistance of the graft postoperatively. Bench level flow experiments and magnetic setups were used to establish design requirements and test prototypes. The Graft Resistance Adjustment Mechanism (GRAM) can be applied to a standard graft before or after it is implanted and a non-contact magnetic coupling enables actuation through the skin for graft compression. The device features a winch-driven system to provide translational movement for a graft compression unit. We expect such a device to enable noninvasive management of steal syndrome in a manner that does not change the existing graft and support technologies, thus reducing patient complications and reducing costs to hospitals.

Publisher

ASME International

Subject

Biomedical Engineering,Medicine (miscellaneous)

Reference13 articles.

1. Steal Syndrome Complicating Hemodialysis Access Procedures: Can It Be Predicted?;Goff;Ann. Vasc. Surg.

2. Maintaining Vascular Access: the Management of Hemodialysis Arteriovenous Grafts;Schild;J. Vasc. Access

3. Status of Research in Vascular Access for Dialysis;Kian;Nephrol. Dial. Transplant

4. Batiste, S. , 2010, “A-V Dialysis Graft,” U.S. Patent No. 7833186.

5. Claude, T. J., Barlow, E. A., Hunter, D. W., and Rosenberg, M. S., 2010, “Dialysis Valve and Method,” U.S. Patent No. 7811264.

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