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基于深度学习的死后 CT 诊断致死性低体温症

Deep Learning-Based Diagnosis of Fatal Hypothermia Using Post-Mortem Computed Tomography.

机构信息

Department of Intelligent Biomedical Systems Engineering, Graduate School of Biomedical Engineering, Tohoku University.

National Institute of Technology, Sendai College.

出版信息

Tohoku J Exp Med. 2023 Jul 15;260(3):253-261. doi: 10.1620/tjem.2023.J041. Epub 2023 May 18.

Abstract

In forensic medicine, fatal hypothermia diagnosis is not always easy because findings are not specific, especially if traumatized. Post-mortem computed tomography (PMCT) is a useful adjunct to the cause-of-death diagnosis and some qualitative image character analysis, such as diffuse hyperaeration with decreased vascularity or pulmonary emphysema, have also been utilized for fatal hypothermia. However, it is challenging for inexperienced forensic pathologists to recognize the subtle differences of fatal hypothermia in PMCT images. In this study, we developed a deep learning-based diagnosis system for fatal hypothermia and explored the possibility of being an alternative diagnostic for forensic pathologists. An in-house dataset of forensic autopsy proven samples was used for the development and performance evaluation of the deep learning system. We used the area under the receiver operating characteristic curve (AUC) of the system for evaluation, and a human-expert comparable AUC value of 0.905, sensitivity of 0.948, and specificity of 0.741 were achieved. The experimental results clearly demonstrated the usefulness and feasibility of the deep learning system for fatal hypothermia diagnosis.

摘要

在法医学中,致命性低体温的诊断并不总是容易的,因为其表现并不具有特异性,尤其是在伴有外伤的情况下。死后计算机断层扫描(PMCT)是死因诊断的有用辅助手段,一些定性的图像特征分析,如弥漫性过度充气伴血管减少或肺气肿,也已用于致命性低体温的诊断。然而,对于经验不足的法医病理学家来说,识别 PMCT 图像中致命性低体温的细微差异具有挑战性。在这项研究中,我们开发了一种基于深度学习的致命性低体温诊断系统,并探索了其作为法医病理学家替代诊断方法的可能性。我们使用内部法医解剖证实样本数据集来开发和评估深度学习系统的性能。我们使用系统的接收者操作特征曲线(ROC)下面积(AUC)进行评估,系统获得了与人类专家可比的 AUC 值 0.905、敏感度 0.948 和特异性 0.741。实验结果清楚地证明了深度学习系统在致命性低体温诊断中的有用性和可行性。

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