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抛体偏航对尸体动物模型中四肢枪弹伤的初步影响:一项偶然研究。

Preliminary effect of projectile yaw on extremity gunshot wounding in a cadaveric animal model: a serendipitous study.

机构信息

Impact and Armour Group, Centre for Defence Engineering, Cranfield University, Defence Academy of the United Kingdom, Shrivenham, SN6 8LA, UK.

Cranfield Forensic Institute, Cranfield University, Defence Academy of the United Kingdom, Shrivenham, SN6 8LA, UK.

出版信息

Int J Legal Med. 2020 May;134(3):1149-1157. doi: 10.1007/s00414-020-02271-7. Epub 2020 Mar 11.

Abstract

Gunshot wounding (GSW) is capable of causing devastating tissue injuries by delivering kinetic energy (KE) through the contact surface area of a projectile. The contact surface area can be increased by yaw, deformation and fragmentation, all of which may be caused by any intermediate layers struck by the projectile prior to entering its target. This study aims to describe whether projectile yaw occurring before penetration of a cadaveric animal limb model causes greater damage with or without clothing layers present using 5.45 × 39 mm projectiles. In total, 12 fallow deer hind limbs were shot, further divided into 4 with no clothing layers (C), 4 with a single clothing layer (C) and 4 with maximum clothing layers (C) as worn on active duty by UK military personnel. Contrast computed tomography (CT) of limbs was used to measure permanent cavity size and the results were compared using analysis of variance (ANOVA). No significant differences were found among clothing states for each series of measurements taken, with greater cavity sizes noted in all clothing states. This is in contrast to previous work looking at symmetrically flying projectiles in the same model, where a larger permanent cavity was found only with C present. Projectile yaw is therefore likely to be a key variable with regard to causation of damage within this extremity wound model.

摘要

枪击伤(GSW)能够通过投射物的接触表面区域传递动能(KE),从而对组织造成毁灭性的损伤。接触表面区域可以通过偏航、变形和碎裂来增加,所有这些都可能是由于投射物在进入目标之前遇到的任何中间层造成的。本研究旨在描述在穿透尸体动物肢体模型之前发生的投射物偏航是否会导致更大的损伤,无论是否存在衣物层,使用 5.45×39 毫米的投射物。总共对 12 只赤鹿后腿进行了射击,进一步分为 4 组没有衣物层(C),4 组只有单层衣物层(C),4 组最大衣物层(C),如英国军人在现役时所穿。使用对比计算机断层扫描(CT)对肢体进行测量,以测量永久性空腔的大小,并使用方差分析(ANOVA)进行比较。在每个系列的测量中,在衣物状态之间没有发现显著差异,所有衣物状态下的空腔尺寸都较大。这与之前在同一模型中观察到对称飞行的投射物的工作相反,在该模型中仅在存在 C 时才发现更大的永久性空腔。因此,投射物偏航很可能是该肢体创伤模型中损伤原因的一个关键变量。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/1725/7181544/8eb2d0ce9d34/414_2020_2271_Fig1_HTML.jpg

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