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Contrast-enhanced ultrasonography-based renal blood perfusion in brain-dead donors predicts early graft function

Authors :
Weiming He
Yuguang Xu
Chaoyang Gong
Xiaozhen Liu
Yuqiang Wu
Xi Xie
Jiazhen Chen
Yi Yu
Zhiyong Guo
Qiang Sun
Source :
Ultrasonography, Vol 42, Iss 4, Pp 532-543 (2023)
Publication Year :
2023
Publisher :
Korean Society of Ultrasound in Medicine, 2023.

Abstract

Purpose The aim of this study was to quantify renal microcirculatory perfusion in braindead donors using contrast-enhanced ultrasonography (CEUS), and to establish an accurate, noninvasive, and convenient index for predicting delayed graft function (DGF) post-transplantation. Methods In total, 90 brain-dead donor kidneys (training group, n=60; validation group, n=30) examined between August 2020 and November 2022 were recruited in this prospective study. CEUS was performed on the kidneys of brain-dead donors 24 hours before organ procurement and time-intensity curves were constructed. The main measures were arrival time, time to peak, and peak intensity of the kidney segmental arteries, cortex, and medulla. Recipients were divided into DGF and non-DGF groups according to early post-transplant graft function. The area under the receiver operating characteristic curve (AUC) was used to assess diagnostic performance. Results The arrival time of the kidney segmental artery and cortex and the time interval between the time to peak of the segmental artery and cortex were identified as independent factors associated with DGF by multivariate stepwise regression analysis. A new index for the joint prediction model of three variables, the contrast-enhanced ultrasonography/Kidney Donor Profile index (CEUS-KDPI), was developed. CEUS-KDPI showed high accuracy for predicting DGF (training group: AUC, 0.91; sensitivity, 90.5%; specificity, 92.3%; validation group: AUC, 0.84; sensitivity, 75.0%; specificity, 92.3%). Conclusion CEUS-KDPI accurately predicted DGF after kidney transplantation. CEUS may be a potential noninvasive tool for bedside examinations before organ procurement and may be used to predict early renal function after kidney transplants kidneys from donors after brain death.

Details

Language :
English
ISSN :
22885919 and 22885943
Volume :
42
Issue :
4
Database :
Directory of Open Access Journals
Journal :
Ultrasonography
Publication Type :
Academic Journal
Accession number :
edsdoj.93528a4c1b640f786108ebca1b27f8c
Document Type :
article
Full Text :
https://doi.org/10.14366/usg.23006