Affiliation:
1. The Second Hospital of Anhui Medical University, Hefei, China
2. Beijing Hospital, Beijing, China
Abstract
Purpose. To precisely quantify split glomerular filtration rate by Tc-99m-DTPA renal dynamic imaging and plasma clearance in order to increase its consistency among doctors. Methods. Tc-99m-DTPA renal dynamic imaging was performed according to the conventional radionuclide renal dynamic imaging by five double-blinded doctors independently and automatically calculated split GFR, namely, gGFR. Moreover, the conventional radionuclide renal dynamic imaging was assessed to only outline the kidney, blank background, and automatically calculated split GFR, gGFR
. The total GFR value of patients, tGFR, was obtained by the double-plasma method. According to the formula,
. The precise GFR value of the divided kidney, pGFR, was calculated. The Kendall’s
test was used to compare the consistency of gGFR and pGFR drawn by five physicians. Results. According to Kendall’s
consistency test, Kendall’s coefficient of concordance was 0.834,
using conventional method. The same five doctors used blank background again and the same standard Gates method to draw the kidneys, which automatically calculated gGFR
. Using input formula, the pGFR was calculated and Kendall’s
consistency test (
,
). Conclusion. The combination of Tc-99m-DTPA renal dynamic imaging combined with the double-plasma method could achieve accurate split GFR, and because of the omission of influence factors, the consistency of pGFR obtained by different doctors using this method was significantly higher than that of conventional Tc-99m-DTPA renal dynamic imaging.
Subject
Biochemistry (medical),Clinical Biochemistry,Genetics,Molecular Biology,General Medicine
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