Measurement of renal perfusion and blood flow with fast computed tomography. 1994

M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
Department of Biological Sciences (M.D.B.), Mankato State University, Minn.

Fast computed tomography (CT) is one of the few methods available to measure cortical and medullary renal blood flow (RBF) directly. Because these measurements are complicated by passage of the contrast medium into extravascular compartments, we used the residual opacity following the vascular blush as an index to account for extravascular iohexol. Kidneys of anesthetized dogs were examined in situ by fast CT following intra-aortic injections of iohexol. Perfusion was analyzed during a control period and three subsequent periods in which RBF was reduced by 10%, 30%, and 50%. Cortical microvascular distribution volume changed from 19.7 +/- 2.8% to 19.8 +/- 1.7%, 15.3 +/- 1.2%, and 9.9 +/- 1.7%, respectively, without significant alterations in cortical mean transit time. Microvascular distribution volume was divided by mean transit time to determine tissue perfusion. Cortical perfusion changed from 3.8 +/- 0.7 to 3.9 +/- 0.6, 3.1 +/- 0.5, and 2.2 +/- 0.5 mL.min-1.mL tissue-1. Total cortical blood flow (cortical perfusion multiplied by cortical volume) decreased from 164 +/- 32 to 159 +/- 31, 117 +/- 20, and 86 +/- 22 mL/min, respectively. Medullary microvascular distribution volume, mean transit time, perfusion, and total blood flow remained unchanged. Fast CT-determined total RBFs (cortex plus medulla) were similar to simultaneous electromagnetic flow measurements. These results indicate that renal regional perfusion is more dependent on the microvascular distribution volume than mean transit time and that variations in renal tissue perfusion with reduction of RBF are more apparent in the cortex than in the medulla.

UI MeSH Term Description Entries
D007668 Kidney Body organ that filters blood for the secretion of URINE and that regulates ion concentrations. Kidneys
D008833 Microcirculation The circulation of the BLOOD through the MICROVASCULAR NETWORK. Microvascular Blood Flow,Microvascular Circulation,Blood Flow, Microvascular,Circulation, Microvascular,Flow, Microvascular Blood,Microvascular Blood Flows,Microvascular Circulations
D004285 Dogs The domestic dog, Canis familiaris, comprising about 400 breeds, of the carnivore family CANIDAE. They are worldwide in distribution and live in association with people. (Walker's Mammals of the World, 5th ed, p1065) Canis familiaris,Dog
D000704 Analysis of Variance A statistical technique that isolates and assesses the contributions of categorical independent variables to variation in the mean of a continuous dependent variable. ANOVA,Analysis, Variance,Variance Analysis,Analyses, Variance,Variance Analyses
D000818 Animals Unicellular or multicellular, heterotrophic organisms, that have sensation and the power of voluntary movement. Under the older five kingdom paradigm, Animalia was one of the kingdoms. Under the modern three domain model, Animalia represents one of the many groups in the domain EUKARYOTA. Animal,Metazoa,Animalia
D014057 Tomography, X-Ray Computed Tomography using x-ray transmission and a computer algorithm to reconstruct the image. CAT Scan, X-Ray,CT Scan, X-Ray,Cine-CT,Computerized Tomography, X-Ray,Electron Beam Computed Tomography,Tomodensitometry,Tomography, Transmission Computed,X-Ray Tomography, Computed,CAT Scan, X Ray,CT X Ray,Computed Tomography, X-Ray,Computed X Ray Tomography,Computerized Tomography, X Ray,Electron Beam Tomography,Tomography, X Ray Computed,Tomography, X-Ray Computer Assisted,Tomography, X-Ray Computerized,Tomography, X-Ray Computerized Axial,Tomography, Xray Computed,X Ray Computerized Tomography,X Ray Tomography, Computed,X-Ray Computer Assisted Tomography,X-Ray Computerized Axial Tomography,Beam Tomography, Electron,CAT Scans, X-Ray,CT Scan, X Ray,CT Scans, X-Ray,CT X Rays,Cine CT,Computed Tomography, Transmission,Computed Tomography, X Ray,Computed Tomography, Xray,Computed X-Ray Tomography,Scan, X-Ray CAT,Scan, X-Ray CT,Scans, X-Ray CAT,Scans, X-Ray CT,Tomographies, Computed X-Ray,Tomography, Computed X-Ray,Tomography, Electron Beam,Tomography, X Ray Computer Assisted,Tomography, X Ray Computerized,Tomography, X Ray Computerized Axial,Transmission Computed Tomography,X Ray Computer Assisted Tomography,X Ray Computerized Axial Tomography,X Ray, CT,X Rays, CT,X-Ray CAT Scan,X-Ray CAT Scans,X-Ray CT Scan,X-Ray CT Scans,X-Ray Computed Tomography,X-Ray Computerized Tomography,Xray Computed Tomography

Related Publications

M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
April 1987, Kidney international,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
December 1993, American journal of cardiac imaging,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
December 1994, Journal de radiologie,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
December 1969, Angiology,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
December 1987, Circulation,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
January 2020, Frontiers in veterinary science,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
June 1994, Investigative radiology,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
November 1993, Nihon rinsho. Japanese journal of clinical medicine,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
May 1995, The British journal of radiology,
M D Bentley, and L O Lerman, and E A Hoffman, and M J Fiksen-Olsen, and E L Ritman, and J C Romero
September 1994, American journal of hypertension,
Copied contents to your clipboard!