Cargando…

A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening

Hepatocellular carcinoma (HCC) can be potentially discovered from abdominal computed tomography (CT) studies under varied clinical scenarios (e.g., fully dynamic contrast‐enhanced [DCE] studies, noncontrast [NC] plus venous phase [VP] abdominal studies, or NC‐only studies). Each scenario presents it...

Descripción completa

Detalles Bibliográficos
Autores principales: Cheng, Chi‐Tung, Cai, Jinzheng, Teng, Wei, Zheng, Youjing, Huang, Yu‐Ting, Wang, Yu‐Chao, Peng, Chien‐Wei, Tang, Youbao, Lee, Wei‐Chen, Yeh, Ta‐Sen, Xiao, Jing, Lu, Le, Liao, Chien‐Hung, Harrison, Adam P.
Formato: Online Artículo Texto
Lenguaje:English
Publicado: John Wiley and Sons Inc. 2022
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9512477/
https://www.ncbi.nlm.nih.gov/pubmed/35852311
http://dx.doi.org/10.1002/hep4.2029
_version_ 1784797846781820928
author Cheng, Chi‐Tung
Cai, Jinzheng
Teng, Wei
Zheng, Youjing
Huang, Yu‐Ting
Wang, Yu‐Chao
Peng, Chien‐Wei
Tang, Youbao
Lee, Wei‐Chen
Yeh, Ta‐Sen
Xiao, Jing
Lu, Le
Liao, Chien‐Hung
Harrison, Adam P.
author_facet Cheng, Chi‐Tung
Cai, Jinzheng
Teng, Wei
Zheng, Youjing
Huang, Yu‐Ting
Wang, Yu‐Chao
Peng, Chien‐Wei
Tang, Youbao
Lee, Wei‐Chen
Yeh, Ta‐Sen
Xiao, Jing
Lu, Le
Liao, Chien‐Hung
Harrison, Adam P.
author_sort Cheng, Chi‐Tung
collection PubMed
description Hepatocellular carcinoma (HCC) can be potentially discovered from abdominal computed tomography (CT) studies under varied clinical scenarios (e.g., fully dynamic contrast‐enhanced [DCE] studies, noncontrast [NC] plus venous phase [VP] abdominal studies, or NC‐only studies). Each scenario presents its own clinical challenges that could benefit from computer‐aided detection (CADe) tools. We investigate whether a single CADe model can be made flexible enough to handle different contrast protocols and whether this flexibility imparts performance gains. We developed a flexible three‐dimensional deep algorithm, called heterophase volumetric detection (HPVD), that can accept any combination of contrast‐phase inputs with adjustable sensitivity depending on the clinical purpose. We trained HPVD on 771 DCE CT scans to detect HCCs and evaluated it on 164 positives and 206 controls. We compared performance against six clinical readers, including two radiologists, two hepatopancreaticobiliary surgeons, and two hepatologists. The area under the curve of the localization receiver operating characteristic for NC‐only, NC plus VP, and full DCE CT yielded 0.71 (95% confidence interval [CI], 0.64–0.77), 0.81 (95% CI, 0.75–0.87), and 0.89 (95% CI, 0.84–0.93), respectively. At a high‐sensitivity operating point of 80% on DCE CT, HPVD achieved 97% specificity, which is comparable to measured physician performance. We also demonstrated performance improvements over more typical and less flexible nonheterophase detectors. Conclusion: A single deep‐learning algorithm can be effectively applied to diverse HCC detection clinical scenarios, indicating that HPVD could serve as a useful clinical aid for at‐risk and opportunistic HCC surveillance.
format Online
Article
Text
id pubmed-9512477
institution National Center for Biotechnology Information
language English
publishDate 2022
publisher John Wiley and Sons Inc.
record_format MEDLINE/PubMed
spelling pubmed-95124772022-09-30 A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening Cheng, Chi‐Tung Cai, Jinzheng Teng, Wei Zheng, Youjing Huang, Yu‐Ting Wang, Yu‐Chao Peng, Chien‐Wei Tang, Youbao Lee, Wei‐Chen Yeh, Ta‐Sen Xiao, Jing Lu, Le Liao, Chien‐Hung Harrison, Adam P. Hepatol Commun Original Articles Hepatocellular carcinoma (HCC) can be potentially discovered from abdominal computed tomography (CT) studies under varied clinical scenarios (e.g., fully dynamic contrast‐enhanced [DCE] studies, noncontrast [NC] plus venous phase [VP] abdominal studies, or NC‐only studies). Each scenario presents its own clinical challenges that could benefit from computer‐aided detection (CADe) tools. We investigate whether a single CADe model can be made flexible enough to handle different contrast protocols and whether this flexibility imparts performance gains. We developed a flexible three‐dimensional deep algorithm, called heterophase volumetric detection (HPVD), that can accept any combination of contrast‐phase inputs with adjustable sensitivity depending on the clinical purpose. We trained HPVD on 771 DCE CT scans to detect HCCs and evaluated it on 164 positives and 206 controls. We compared performance against six clinical readers, including two radiologists, two hepatopancreaticobiliary surgeons, and two hepatologists. The area under the curve of the localization receiver operating characteristic for NC‐only, NC plus VP, and full DCE CT yielded 0.71 (95% confidence interval [CI], 0.64–0.77), 0.81 (95% CI, 0.75–0.87), and 0.89 (95% CI, 0.84–0.93), respectively. At a high‐sensitivity operating point of 80% on DCE CT, HPVD achieved 97% specificity, which is comparable to measured physician performance. We also demonstrated performance improvements over more typical and less flexible nonheterophase detectors. Conclusion: A single deep‐learning algorithm can be effectively applied to diverse HCC detection clinical scenarios, indicating that HPVD could serve as a useful clinical aid for at‐risk and opportunistic HCC surveillance. John Wiley and Sons Inc. 2022-07-19 /pmc/articles/PMC9512477/ /pubmed/35852311 http://dx.doi.org/10.1002/hep4.2029 Text en © 2022 The Authors. Hepatology Communications published by Wiley Periodicals LLC on behalf of American Association for the Study of Liver Diseases. https://creativecommons.org/licenses/by-nc-nd/4.0/This is an open access article under the terms of the http://creativecommons.org/licenses/by-nc-nd/4.0/ (https://creativecommons.org/licenses/by-nc-nd/4.0/) License, which permits use and distribution in any medium, provided the original work is properly cited, the use is non‐commercial and no modifications or adaptations are made.
spellingShingle Original Articles
Cheng, Chi‐Tung
Cai, Jinzheng
Teng, Wei
Zheng, Youjing
Huang, Yu‐Ting
Wang, Yu‐Chao
Peng, Chien‐Wei
Tang, Youbao
Lee, Wei‐Chen
Yeh, Ta‐Sen
Xiao, Jing
Lu, Le
Liao, Chien‐Hung
Harrison, Adam P.
A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title_full A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title_fullStr A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title_full_unstemmed A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title_short A flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
title_sort flexible three‐dimensional heterophase computed tomography hepatocellular carcinoma detection algorithm for generalizable and practical screening
topic Original Articles
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC9512477/
https://www.ncbi.nlm.nih.gov/pubmed/35852311
http://dx.doi.org/10.1002/hep4.2029
work_keys_str_mv AT chengchitung aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT caijinzheng aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT tengwei aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT zhengyoujing aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT huangyuting aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT wangyuchao aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT pengchienwei aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT tangyoubao aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT leeweichen aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT yehtasen aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT xiaojing aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT lule aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT liaochienhung aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT harrisonadamp aflexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT chengchitung flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT caijinzheng flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT tengwei flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT zhengyoujing flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT huangyuting flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT wangyuchao flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT pengchienwei flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT tangyoubao flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT leeweichen flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT yehtasen flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT xiaojing flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT lule flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT liaochienhung flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening
AT harrisonadamp flexiblethreedimensionalheterophasecomputedtomographyhepatocellularcarcinomadetectionalgorithmforgeneralizableandpracticalscreening