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Scintigraphic texture analysis for assessment of renal allograft function

Early detection and monitoring of kidney function during the post-transplantation period is one of the most important issues for improving the accuracy of an initial diagnosis. The aim of this study was to evaluate texture analysis (TA) in scintigraphic imaging to detect changes in kidney status aft...

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Bibliographic Details
Published in:Polish journal of radiology 2018-01, Vol.83, p.e1-10
Main Authors: Ardakani, Ali Abbasian, Hekmat, Sepideh, Abolghasemi, Jamileh, Reiazi, Reza
Format: Article
Language:English
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Summary:Early detection and monitoring of kidney function during the post-transplantation period is one of the most important issues for improving the accuracy of an initial diagnosis. The aim of this study was to evaluate texture analysis (TA) in scintigraphic imaging to detect changes in kidney status after transplantation. Scintigraphic images were used for TA from a total of 94 kidney allografts (39 rejected and 55 non-rejected). Images corresponding to the frames at the 2 , 5 , and 20 minute of the study were used to determine the optimum time point for analysis of differences in texture features between the rejected and non-rejected allografts. Linear discriminant analysis indicated the best performance at the fifth minute frame for classification of the rejected and non-rejected allografts with receiver operating characteristic curve (A ) of 0.982, corresponding to 91.89% sensitivity, 96.49% specificity, and 94.68% accuracy. Also, TA can differentiate acute tubular necrosis from acute rejection with A of 0.953 corresponding to 88% sensitivity, 92.31% specificity, and 90.62% accuracy at the 5 minute frame. The best correlation between texture feature and kidney function was achieved at the 20 minute frame ( = -0.396) for glomerular filtration rate. TA has good potential for the characterisation of kidney failure after transplantation and can improve clinical diagnosis.
ISSN:1733-134X
1899-0967
1899-0967
DOI:10.5114/pjr.2018.74956