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Updated: Aug 12, 2026

A Large Animal Model for Acute Kidney Injury by Temporary Bilateral Renal Artery Occlusion
Published on: February 2, 2021
Fluoroscopic landmarks for optimal visualization of the proximal renal arteries
P A Kim1, N M Khilnani, D W Trost
1Department of Radiology, New York Hospital-Cornell Medical Center, NY 10021, USA.
Purpose:
To accurately determine the in vivo orientation of the origin of the renal arteries from the aorta relative to a fluoroscopic bony landmark for optimal diagnostic arteriography and renal artery stent placement.
Materials And Methods:
One hundred sixty abdominal computed tomography (CT) scans of patients in eight age groups (20-90 years) were reviewed to determine the angle of the origins of the renal arteries from the aorta relative to the long axis of the L-1 spinous process (L1SP).
Results:
The right renal artery arises ventrally at an angle of 30 degrees (standard deviation [SD] = 15 degrees) from a plane orthogonal to the long axis of the L1SP. The left renal artery arises dorsally at an angle of 7 degrees (SD = 13 degrees) relative to the same plane.
Conclusions:
The optimal initial angle for angiographic evaluation of the origin of the renal artery and for renal artery stent placement is 30 degrees left anterior oblique (LAO) relative to the L1SP for the right renal artery and 7 degrees LAO for the left renal artery. Unfortunately, there is variability in the angle of the renal artery origins from the aorta which cannot be controlled for using this technique. In some patients, additional views will be necessary to optimally depict the origins of the renal arteries.
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