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比较计算机断层扫描和硅橡胶铸型法在弹道肥皂中弹孔的测定

Comparison between computed tomography and silicone-casting methods to determine gunshot cavities in ballistic soap.

机构信息

Department of Analytical Chemistry, Physical Chemistry and Chemical Engineering and University Institute of Research in Police Sciences (IUICP), University of Alcalá, Ctra. Madrid-Barcelona km 33.6, 28871, Alcalá de Henares (Madrid), Spain.

Military Veterinary Centre, Spanish Ministry of Defence, Darío Gazapo 3, 28024, Madrid, Spain.

出版信息

Int J Legal Med. 2021 May;135(3):829-836. doi: 10.1007/s00414-020-02464-0. Epub 2020 Nov 14.

Abstract

Current methods used in terminal ballistics to determine the volume of temporary cavities created by projectiles in soft tissue simulants (such as ballistic soap) usually involve silicone-casting to obtain the cavity moulds. However, these methods have important drawbacks including their little sensitivity and precision, besides the fact that they are destructive. Imaging techniques such as computed tomography (CT) might not only overcome those limitations but also offer useful tools for digitally reporting the scientific results. This work accomplished the 3D digital reconstruction of the cavities created by different projectiles in ballistic soap blocks. This way, the total volume of the cavities, the projectile penetration depths, and other measurements were determined, rendering better capabilities when compared to the current silicone method. All these features were achieved through the CT analysis and 3D Slicer imaging software. In addition, it is worth mentioning that the method can preserve the evidence by digitally obtaining, signing, and storing the infographic videos displaying the 3D-reconstructed cavities. Graphical abstract.

摘要

目前,在终端弹道学中,用于确定弹丸在软组织模拟物(如弹道肥皂)中产生的临时空腔体积的方法通常涉及硅橡胶铸模以获得空腔模具。然而,这些方法存在重要的缺点,包括它们的灵敏度和精度较低,而且它们是破坏性的。计算机断层扫描(CT)等成像技术不仅可以克服这些限制,还可以为数字报告科学结果提供有用的工具。本工作完成了不同弹丸在弹道肥皂块中产生的空腔的 3D 数字重建。通过这种方式,可以确定空腔的总体积、弹丸的穿透深度和其他测量值,与当前的硅橡胶方法相比,具有更好的能力。所有这些功能都是通过 CT 分析和 3D Slicer 成像软件实现的。此外,值得一提的是,该方法可以通过数字获取、签名和存储显示 3D 重建空腔的信息图视频来保存证据。

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