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Fistula guard.

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J B Angelo. 1983. Fistula guard.. https://doi.org/10.5014/ajot.37.9.630

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Management of suspected hemodialysis graft dysfunction: usefulness of diagnostic US.

PURPOSE: To evaluate the role and usefulness of diagnostic ultrasonography (US) in the assessment of hemodialysis access grafts with an intermediate probability of graft malfunction. MATERIALS AND METHODS: One hundred forty-seven complete US examinations were performed in 91 patients. Average volume of flow, peak systolic velocity, and diameter of residual lumen were recorded. Patients were referred by the nephrology department when clinical findings were suggestive, but not obviously, of graft malfunction. Study results were deemed normal if flow volume exceeded 1,300 mL/min without significant visualized stenosis of 50% of the diameter or greater or if flow approached 1,300 mL/min without peak systolic velocity greater than 400 cm/sec. RESULTS: Of the 147 examinations, 49 (33%) had normal results, seven (5%) showed thrombosis at examination, and 91 (62%) had evidence of at least one significant visualized stenosis or diffuse notable degree of thrombus. Three patients with normal results required fistulography within 90 days, one for thrombosis. In the 91 studies with abnormal results, 69 patients underwent fistulography; results in 63 showed agreement, and three showed false-positive results. More central venous stenoses were found at fistulography than at US. CONCLUSION: US is a useful and reliable first step in managing clinically suspected hemodialysis graft stenosis. One-third of the studies showed no significant stenosis and did not require angiographic evaluation. US should be the initial study in patients suspected of having hemodialysis access dysfunction without exceptional evidence of stenosis.

Arteriovenous Shunt, Surgical↗

Peripheral hemodialysis shunt with intracranial venous congestion.

BACKGROUND: Intracranial venous congestion is often caused by local venous thrombosis or brain arteriovenous fistulas. Hemodialysis shunts are known to cause venous enlargement in the arm or chest but have not been related to intracranial vascular pathology. Case Description- A 59-year-old woman who presented with increasing headache, gait instability, and memory loss was a renal transplant recipient who still carried a left upper arm shunt. Cranial CT scan showed enlarged veins in the posterior fossa with incipient hydrocephalus. Extracranial duplex sonography revealed reversed flow in the left internal jugular vein, which normalized on cuff inflation around the shunt-carrying arm. The reversed flow, intracranial venous congestion, and neurological status improved after surgical shunt ligation. CONCLUSIONS: To our knowledge, this is the first case description of an intracranial venous outflow obstruction caused by a peripheral arteriovenous shunt.

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MRA of hemodialysis access grafts and fistulae using selective contrast injection and flow interruption.

MR is a potentially attractive modality for evaluating hemodialysis access anatomy and function. However, the wide range of flow rates in the hemodialysis access complicates interpretation of phase contrast, time-of-flight, and even contrast-enhanced MR angiograms. At high flow rates, signal voids may easily arise at mild narrowings or sharp-angled anastomoses. A method is proposed which visualizes hemodialysis accesses without flow artifacts. Diluted Gd-DTPA is hand-injected directly into the access, while a cuff is used to reduce and subsequently interrupt access flow. Filling of the access is monitored using a fast projection technique with complex subtraction. When filling is satisfactory, a 3D acquisition is started. The feasibility of this selective contrast-enhanced MR angiography technique is demonstrated in four Cimino-fistulae and four PTFE grafts. Magn Reson Med 45:557-561, 2001.

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