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At least 19 recordsLinked to original sources

Superior mesenteric artery-to-renal artery bypass: a rare but useful alternative for renal artery revascularization.

The aorta, celiac axis, and iliac arteries are the most common inflow arteries used for renal revascularization. When these inflow vessels are diseased, the superior mesenteric artery (SMA) can be an alternative source of renal artery graft inflow. Previous reports have suggested that only an enlarged SMA should be used for this purpose, for fear of developing mesenteric ischemia. We report a patient who required renal artery revascularization with a saphenous vein graft from a normal-caliber SMA who did not develop subsequent mesenteric ischemia. The procedure was unique in demonstrating that the SMA can be used as a viable source of graft inflow even when it is anatomically normal.

Aged↗

Trapped renal arteries: functional renal artery stenosis due to occlusion of the aorta in the arch and below the kidneys.

Acute renal failure is a well recognized complication from the use of angiotensin-converting enzyme inhibitors in patients with severe bilateral renovascular disease. A 54-year-old woman presented with acute pulmonary edema with intractable hypertension and a history of lower limb claudication. The addition of lisinopril to her antihypertensive regimen resulted, within 48 h, in the development of acute renal failure that remitted with cessation of the drug. She was found to have a heavily calcified occlusion of her aortic arch and another occlusion of the aorta below the renal arteries. Angiography and Doppler ultrasonography showed normal renal arteries. This is the first reported case of angiotensin-converting enzyme inhibitor-induced renal failure occurring in a patient with atherosclerotic occlusion of the aorta. The literature on suprarenal aortic occlusion is reviewed to determine the manner of presentation, prevalent risk factors and physical findings that typify this unique clinical entity.

Acute Kidney Injury↗

Standard dose Gd-DTPA dynamic MR of renal arteries.

Renal MR contrast enhancement depends on the timing of image acquisition. Limited human trials have demonstrated efficacy of renal artery stents on salvage of renal function. This study assessed the ability of dynamic gadolinium-diethylenetriamine pentaacetic acid (Gd-DTPA) administration to demonstrate renal artery stenosis and renal stent patency compared to conventional angiography as the gold standard. Twenty subjects referred for renal angiography underwent 22 dynamic MR studies, including 7 with renal artery stenting (Palmaz P204 or P201, Johnson & Johnson, Sydney, Australia). All were examined with conventional angiography and after dynamic Gd-DTPA infusion. Coronal MR images of the kidneys were acquired using a GE Signa 1.5-T magnet (General Electric Medical Systems, Milwaukee, WI) (fast spoiled gradient echo [FSPGR]; TE=4.2 msec, TR=68-150 msec, flip angle=75 degrees) 0 to 600 seconds after iv bolus injection of 15 ml of Gd-DTPA during sequential breath-hold acquisitions, 13 to 32 seconds each. All 51 renal arteries (13 stenosed, 38 normal) were detected with dynamic MRI. Severity of renal artery stenosis was classified correctly with an accuracy of 98% (95% confidence interval [CI]: 85-100), yielding 98% specificity and 100% sensitivity. All nine renal stents were visualized with 100% accurate patency documentation. FSPGR MRI with bolus Gd-DTPA administration can provide adequate time and spatial resolution to demonstrate renal artery stenosis.

Adult↗

Medial fibroplasia: involvement of renal artery and small renal arteries in renal vascular hypertension.

Dysplasia of the renal artery may cause renal vascular hypertension. The most common type of dysplasia is the medial fibroplasia. Medial fibroplasia, as well as the other types of dysplasia, has only been described in the main and primary branches of the renal artery. A case of medial fibroplasia, where arterial changes were seen far out in the small renal vessels is reported.

Fibromuscular Dysplasia↗

Revascularization of traumatic thrombosis of the renal artery.

Renal artery thrombosis, although well recognized, remains a rare complication of blunt abdominal trauma. In an effort to resolve the current controversy concerning the appropriate therapy, we have reviewed the available literature. Only those instances when the injury was due to blunt trauma and resulted in complete occlusion of the renal artery, documented by roentgenographic means, were included in this review. Avulsion injuries, incomplete occlusion or branch artery injuries were also excluded. In order to be classified as a surgical success, postoperative documentation of renal function and a patent renal artery were required. Only nine successfully performed vascularization procedures were identified. There were four instances of bilateral obstruction with postoperative serum creatinine levels ranging from 1.77 to 7.1 milligrams per deciliter. All required postoperative dialysis ranging from three days to three months in duration. Thirty-five patients with an unilaterally obstructed renal artery underwent attempted revascularization. Five patients, all with a presumed ischemic time of less than 12 hours, had a successful outcome. Postoperatively, four patients demonstrated either a decrease in size or function of the injured kidney. Thirteen eventually required nephrectomy.

Abdominal Injuries↗

Transluminal angioplasty in patients with bilateral renal artery stenosis or renal artery stenosis in a solitary functioning kidney.

Renal angioplasty in patients with bilateral renal artery stenosis or with renal artery stenosis in a solitary functioning kidney has been thought to be relatively contraindicated. We report the results of renal artery angioplasty in 18 patients, 10 with severe bilateral renal artery stenosis and eight with severe renal artery stenosis in a solitary kidney. Twenty-five (89%) of 28 angioplasties were successful, with a mean improvement of the degree of stenosis from 85% to 18% after angioplasty and a restoration of renal blood flow. A significant drop in mean blood pressure at admission of 187/101 mm Hg to 154/87 mm Hg at discharge, 152/86 mm Hg at 3-month, and 146/82 mm Hg at 1-year follow-up was seen. Because of the decrease in blood pressure, 11 of the patients decreased or stopped taking diuretics and 15 decreased or stopped taking antihypertensive medications. Although no significant change in renal function was found by measuring mean serum creatinine levels over time, no patient had an elevated serum creatinine level at follow-up, indicating preservation of renal function. One major complication, cholesterol embolization to the bowel, was seen. Our results suggest that angioplasty is an acceptable treatment of hypertension in patients with bilateral renal artery stenosis or renal artery stenosis in a single kidney.

Aged↗

Noninvasive method using multidetector CT for calculating the relative blood supply ratio of duplicated renal arteries in renal donors.

PURPOSE: The aim of this study was to evaluate the correlation between the renal artery cross-sectional area measured by multidetector computed tomography (MDCT) and the nephrogram area calculated by renal arteriography in potential living renal donors with duplicated renal arteries. MATERIALS AND METHODS: Medical records of 18 patients with duplicated renal arteries who underwent both MDCT angiography and renal arteriography between 2001 and 2003 were retrospectively reviewed. All 20 kidneys were evaluated. Renal artery cross-sectional areas were measured using the workstation to which the CT data were transferred; the nephrogram areas on the digitized angiographic images were calculated using public domain software. Bland-Altman analysis was performed to compare the cross-sectional area ratio of the accessory arteries to the main renal arteries, with the ratios obtained from the nephrogram areas calculated from the arteriograms. RESULTS: The mean cross-sectional areas of the accessory and main renal arteries were 6.78 and 20.9 mm2, respectively. The ratio of the nephrogram areas calculated from the arteriograms ranged from 0.094 to 0.809. Bland-Altman analysis showed no significant difference. CONCLUSION: It is possible to predict the supply volume of accessory renal arteries by measuring the cross-sectional area of the accessory and main renal arteries in potential living renal donors.

Adult↗

Comparison of renal vein renin activity in hypertensive patients with stenosis of one or both renal arteries.

Renal vein renin measurements were compared in 64 hypertensive patients with arteriographically documented stenoses or complete occlusion of one or both renal arteries. The characteristic pattern of curable renovascular hypertension, i.e. increased increment of renin from the ischaemic kidney with contralateral suppression of renin secretion, was seen not only in patients with unilateral stenoses, but also in most patients with bilateral stenoses. Contralateral suppression was less marked in azotemic patients. The highest increments of renal vein renin were seen when the renal artery was completely occluded. The patterns were similar following acute or chronic administration of captopril, suggesting that angiotensin II is not responsible. Increased sodium delivery to the macula densa is postulated as a possible cause of contralateral suppression.

Angiotensin II↗

Aortorenal bypass with autogenous renal artery for coexisting renal carcinoma and renal artery stenosis.

A case of renal artery stenosis and a large contralateral renal carcinoma is reported. After radical nephrectomy of the tumor-bearing kidney revascularization of the solitary remaining kidney was performed with an aortorenal bypass graft of autogenous renal artery. When renal artery stenosis coexists with contralateral intrinsic renal disease preservation of functioning renal parenchyma is an important goal of therapy.

Aorta, Abdominal↗

US, CT, and MR evaluation of accessory renal arteries and proximal renal arterial branches.

RATIONALE AND OBJECTIVES: The purpose of this study was to compare color Doppler ultrasound (US), computed tomographic (CT) angiography, and magnetic resonance (MR) angiography for the evaluation of accessory renal arteries and proximal branches of the main renal artery. MATERIALS AND METHODS: Fifty-six subjects who had undergone conventional arteriography of the renal arteries participated in a prospective comparison of Doppler US (45 patients), CT angiography (52 patients), and nonenhanced MR angiography (28 patients). Conventional arteriography depicted 28 accessory renal arteries and 21 proximal branches of the main renal artery within 2 cm of the aorta. RESULTS: US depicted five of 24 accessory renal arteries seen at arteriography but no proximal arterial branches. CT angiography depicted 24 of 26 accessory renal arteries and 13 of 17 proximal arterial branches, as well as 15 additional accessory renal arteries not seen at conventional arteriography. MR demonstrated 11 of 15 accessory arteries, as well as four additional accessory arteries not seen at conventional arteriography. MR did not depict any of nine proximal arterial branches seen at conventional arteriography. CONCLUSION: When compared with US or nonenhanced MR angiography, CT is the preferred method for evaluation of accessory renal arteries and proximal branches of the renal artery.

Adult↗