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Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation

PURPOSE: A non-invasive way of assessing post-transplant renal graft function has been needed. This study aimed to assess the micro-structural and micro-functional status of graft kidneys by using intravoxel incoherent motion- (IVIM-) diffusion-weighted imaging (DWI) to investigate delayed graft fun...

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Autores principales: Chang, Yung-Chieh, Tsai, Yi-Hsin, Chung, Mu-Chih, Pan, Kuan-Jung, Ho, Hao-Chung, Chen, Hsian-Min, Ouyang, Yen-Chien, Shu, Kuo-Hsiung, Chen, Jeon-Hor, Chai, Jyh-Wen
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Hindawi 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596237/
https://www.ncbi.nlm.nih.gov/pubmed/36303584
http://dx.doi.org/10.1155/2022/2832996
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author Chang, Yung-Chieh
Tsai, Yi-Hsin
Chung, Mu-Chih
Pan, Kuan-Jung
Ho, Hao-Chung
Chen, Hsian-Min
Ouyang, Yen-Chien
Shu, Kuo-Hsiung
Chen, Jeon-Hor
Chai, Jyh-Wen
author_facet Chang, Yung-Chieh
Tsai, Yi-Hsin
Chung, Mu-Chih
Pan, Kuan-Jung
Ho, Hao-Chung
Chen, Hsian-Min
Ouyang, Yen-Chien
Shu, Kuo-Hsiung
Chen, Jeon-Hor
Chai, Jyh-Wen
author_sort Chang, Yung-Chieh
collection PubMed
description PURPOSE: A non-invasive way of assessing post-transplant renal graft function has been needed. This study aimed to assess the micro-structural and micro-functional status of graft kidneys by using intravoxel incoherent motion- (IVIM-) diffusion-weighted imaging (DWI) to investigate delayed graft function (DGF) immediately after transplantation. METHOD: A prospective study was conducted on 37 patients, 14 with early graft function (EGF) and 23 with DGF (9 with complication, 14 without) who underwent IVIM-DWI, most often within 1-7 days after kidney transplantation. A total of 37 cases were collected and all the participants have been well-informed and signed their consents. In addition, the study conducted in this paper was approved by the Ethics Committee of Clinical Research, Taichung Veterans General Hospital (IRB number: CE14065). Using biexponential analysis of slow diffusion coefficient (D(slow)), fast diffusion coefficient (D(fast)), and perfusion fraction was performed. The apparent diffusion coefficient (ADC) was calculated by use of a monoexponential model. All parameters were measured from three different regions-of-interest (ROI), covering the entire renal parenchyma, cortex, and medulla. RESULTS: D (slow), perfusion fraction, and ADC were significantly higher in patients with EGF than DGF (all p values values <0.001). Especially, ADC measured from ROI covering the entire kidney parenchyma had the best cut-off value (1.93μm(2)/msec) with the highest area under the receiver operating characteristic curve (AUC 0.943) in differentiating EGF from DGF. For analysis of pair-wise differences, only the perfusion fraction values, measured from the ROI covering the renal cortex, were significantly higher in 14 DGF patients with no complications than in the 9 DGF patients with complications, with the best cut-off value of 12.3% and the AUC of 0.844. CONCLUSION: Noninvasive IVIM-DWI reliably differentiates DGF from EGF after kidney transplantation, and it may aid in identifying posttransplant complications and indications for renal biopsy.
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spelling pubmed-95962372022-10-26 Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation Chang, Yung-Chieh Tsai, Yi-Hsin Chung, Mu-Chih Pan, Kuan-Jung Ho, Hao-Chung Chen, Hsian-Min Ouyang, Yen-Chien Shu, Kuo-Hsiung Chen, Jeon-Hor Chai, Jyh-Wen Biomed Res Int Research Article PURPOSE: A non-invasive way of assessing post-transplant renal graft function has been needed. This study aimed to assess the micro-structural and micro-functional status of graft kidneys by using intravoxel incoherent motion- (IVIM-) diffusion-weighted imaging (DWI) to investigate delayed graft function (DGF) immediately after transplantation. METHOD: A prospective study was conducted on 37 patients, 14 with early graft function (EGF) and 23 with DGF (9 with complication, 14 without) who underwent IVIM-DWI, most often within 1-7 days after kidney transplantation. A total of 37 cases were collected and all the participants have been well-informed and signed their consents. In addition, the study conducted in this paper was approved by the Ethics Committee of Clinical Research, Taichung Veterans General Hospital (IRB number: CE14065). Using biexponential analysis of slow diffusion coefficient (D(slow)), fast diffusion coefficient (D(fast)), and perfusion fraction was performed. The apparent diffusion coefficient (ADC) was calculated by use of a monoexponential model. All parameters were measured from three different regions-of-interest (ROI), covering the entire renal parenchyma, cortex, and medulla. RESULTS: D (slow), perfusion fraction, and ADC were significantly higher in patients with EGF than DGF (all p values values <0.001). Especially, ADC measured from ROI covering the entire kidney parenchyma had the best cut-off value (1.93μm(2)/msec) with the highest area under the receiver operating characteristic curve (AUC 0.943) in differentiating EGF from DGF. For analysis of pair-wise differences, only the perfusion fraction values, measured from the ROI covering the renal cortex, were significantly higher in 14 DGF patients with no complications than in the 9 DGF patients with complications, with the best cut-off value of 12.3% and the AUC of 0.844. CONCLUSION: Noninvasive IVIM-DWI reliably differentiates DGF from EGF after kidney transplantation, and it may aid in identifying posttransplant complications and indications for renal biopsy. Hindawi 2022-10-18 /pmc/articles/PMC9596237/ /pubmed/36303584 http://dx.doi.org/10.1155/2022/2832996 Text en Copyright © 2022 Yung-Chieh Chang et al. https://creativecommons.org/licenses/by/4.0/This is an open access article distributed under the Creative Commons Attribution License, which permits unrestricted use, distribution, and reproduction in any medium, provided the original work is properly cited.
spellingShingle Research Article
Chang, Yung-Chieh
Tsai, Yi-Hsin
Chung, Mu-Chih
Pan, Kuan-Jung
Ho, Hao-Chung
Chen, Hsian-Min
Ouyang, Yen-Chien
Shu, Kuo-Hsiung
Chen, Jeon-Hor
Chai, Jyh-Wen
Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title_full Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title_fullStr Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title_full_unstemmed Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title_short Intravoxel Incoherent Motion-Diffusion-Weighted MRI for Investigation of Delayed Graft Function Immediately after Kidney Transplantation
title_sort intravoxel incoherent motion-diffusion-weighted mri for investigation of delayed graft function immediately after kidney transplantation
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9596237/
https://www.ncbi.nlm.nih.gov/pubmed/36303584
http://dx.doi.org/10.1155/2022/2832996
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