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The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges

Medical imaging can assess the tumor and its environment in their entirety, which makes it suitable for monitoring the temporal and spatial characteristics of the tumor. Progress in computational methods, especially in artificial intelligence for medical image process and analysis, has converted the...

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Autores principales: Liu, Zhenyu, Wang, Shuo, Dong, Di, Wei, Jingwei, Fang, Cheng, Zhou, Xuezhi, Sun, Kai, Li, Longfei, Li, Bo, Wang, Meiyun, Tian, Jie
Formato: Online Artículo Texto
Lenguaje:English
Publicado: Ivyspring International Publisher 2019
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401507/
https://www.ncbi.nlm.nih.gov/pubmed/30867832
http://dx.doi.org/10.7150/thno.30309
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author Liu, Zhenyu
Wang, Shuo
Dong, Di
Wei, Jingwei
Fang, Cheng
Zhou, Xuezhi
Sun, Kai
Li, Longfei
Li, Bo
Wang, Meiyun
Tian, Jie
author_facet Liu, Zhenyu
Wang, Shuo
Dong, Di
Wei, Jingwei
Fang, Cheng
Zhou, Xuezhi
Sun, Kai
Li, Longfei
Li, Bo
Wang, Meiyun
Tian, Jie
author_sort Liu, Zhenyu
collection PubMed
description Medical imaging can assess the tumor and its environment in their entirety, which makes it suitable for monitoring the temporal and spatial characteristics of the tumor. Progress in computational methods, especially in artificial intelligence for medical image process and analysis, has converted these images into quantitative and minable data associated with clinical events in oncology management. This concept was first described as radiomics in 2012. Since then, computer scientists, radiologists, and oncologists have gravitated towards this new tool and exploited advanced methodologies to mine the information behind medical images. On the basis of a great quantity of radiographic images and novel computational technologies, researchers developed and validated radiomic models that may improve the accuracy of diagnoses and therapy response assessments. Here, we review the recent methodological developments in radiomics, including data acquisition, tumor segmentation, feature extraction, and modelling, as well as the rapidly developing deep learning technology. Moreover, we outline the main applications of radiomics in diagnosis, treatment planning and evaluations in the field of oncology with the aim of developing quantitative and personalized medicine. Finally, we discuss the challenges in the field of radiomics and the scope and clinical applicability of these methods.
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spelling pubmed-64015072019-03-13 The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges Liu, Zhenyu Wang, Shuo Dong, Di Wei, Jingwei Fang, Cheng Zhou, Xuezhi Sun, Kai Li, Longfei Li, Bo Wang, Meiyun Tian, Jie Theranostics Review Medical imaging can assess the tumor and its environment in their entirety, which makes it suitable for monitoring the temporal and spatial characteristics of the tumor. Progress in computational methods, especially in artificial intelligence for medical image process and analysis, has converted these images into quantitative and minable data associated with clinical events in oncology management. This concept was first described as radiomics in 2012. Since then, computer scientists, radiologists, and oncologists have gravitated towards this new tool and exploited advanced methodologies to mine the information behind medical images. On the basis of a great quantity of radiographic images and novel computational technologies, researchers developed and validated radiomic models that may improve the accuracy of diagnoses and therapy response assessments. Here, we review the recent methodological developments in radiomics, including data acquisition, tumor segmentation, feature extraction, and modelling, as well as the rapidly developing deep learning technology. Moreover, we outline the main applications of radiomics in diagnosis, treatment planning and evaluations in the field of oncology with the aim of developing quantitative and personalized medicine. Finally, we discuss the challenges in the field of radiomics and the scope and clinical applicability of these methods. Ivyspring International Publisher 2019-02-12 /pmc/articles/PMC6401507/ /pubmed/30867832 http://dx.doi.org/10.7150/thno.30309 Text en © Ivyspring International Publisher This is an open access article distributed under the terms of the Creative Commons Attribution (CC BY-NC) license (https://creativecommons.org/licenses/by-nc/4.0/). See http://ivyspring.com/terms for full terms and conditions.
spellingShingle Review
Liu, Zhenyu
Wang, Shuo
Dong, Di
Wei, Jingwei
Fang, Cheng
Zhou, Xuezhi
Sun, Kai
Li, Longfei
Li, Bo
Wang, Meiyun
Tian, Jie
The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title_full The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title_fullStr The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title_full_unstemmed The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title_short The Applications of Radiomics in Precision Diagnosis and Treatment of Oncology: Opportunities and Challenges
title_sort applications of radiomics in precision diagnosis and treatment of oncology: opportunities and challenges
topic Review
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC6401507/
https://www.ncbi.nlm.nih.gov/pubmed/30867832
http://dx.doi.org/10.7150/thno.30309
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