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Radiomics feature reliability assessed by intraclass correlation coefficient: a systematic review

机译:通过脑内相关系数评估的辐射族特征可靠性:系统审查

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摘要

Radiomics research is rapidly growing in recent years, but more concerns on radiomics reliability are also raised. This review attempts to update and overview the current status of radiomics reliability research in the ever expanding medical literature from the perspective of a single reliability metric of intraclass correlation coefficient (ICC). To conduct this systematic review, Preferred Reporting Items for Systematic Reviews and Meta-Analyses (PRISMA) guidelines were followed. After literature search and selection, a total of 481 radiomics studies using CT, PET, or MRI, covering a wide range of subject and disease types, were included for review. In these highly heterogeneous studies, feature reliability to image segmentation was much more investigated than reliability to other factors, such as image acquisition, reconstruction, post-processing, and feature quantification. The reported ICCs also suggested high radiomics feature reliability to image segmentation. Image acquisition was found to introduce much more feature variability than image segmentation, in particular for MRI, based on the reported ICC values. Image post-processing and feature quantification yielded different levels of radiomics reliability and might be used to mitigate image acquisition-induced variability. Some common flaws and pitfalls in ICC use were identified, and suggestions on better ICC use were given. Due to the extremely high study heterogeneities and possible risks of bias, the degree of radiomics feature reliability that has been achieved could not yet be safely synthesized or derived in this review. More future researches on radiomics reliability are warranted.
机译:近年来,辐射瘤研究迅速增长,但还提出了对射频可靠性的更多担忧。本综述尝试从脑内相关系数(ICC)的单一可靠性度量的角度来更新和概述越来越扩展的医学文献中的辐射术可靠性研究的当前状态。为了进行这一系统审查,遵循了系统评价和荟萃分析的首选报告项目(PRISMA)指南。在文献搜索和选择之后,包括CT,PET或MRI共有481项射频研究,包括覆盖各种受试者和疾病类型的审查。在这些高度异构的研究中,对图像分割的特征可靠性比其他因素的可靠性更高,例如图像采集,重建,后处理和特征量化。报告的ICCS还建议高射致的图像分割具有可靠性。发现图像采集基于报告的ICC值引入比图像分割的更多特征可变性,特别是用于MRI。图像后处理和特征量化产生了不同的射频可靠性水平,并且可用于减轻图像采集引起的可变性。确定了ICC使用中的一些常见缺陷和缺陷,并给出了更好的ICC使用的建议。由于高研究异质性和偏差可能的风险,在本次审查中尚未安全地合成或导出已经实现的辐射特征可靠性的程度。不需要更新的放射性物质可靠性研究。

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