从数字到物理模型:在伤口弹道重建中使用3d打印模型。

IF 2.2 3区 医学 Q1 MEDICINE, LEGAL
Fabiano Riva, Daan Wintermans, Stefan Schaufelbühl, Nadine Fuchs, Wim Kerkhoff
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引用次数: 0

摘要

模拟人体组织的合成模型(也称为“替代品”)广泛应用于创伤弹道学。尽管有大量的商业模型显示出有趣的特性,但它们仅限于通用形状。弹丸与目标相互作用的结果根据几个参数而变化;因此,使用特定病例、定制形状的合成模型将提高研究结果的准确性。为此,作者基于死后计算机断层扫描(PMCT)测量,创建了特定病例的3d打印合成模型。第一次弹道测试是在用不同材料打印的简单板上进行的,并与聚氨酯Synbone®产品进行比较,以选择最适合合成头部模型的材料。进一步的测试是在用PLA(聚乳酸)、PETG(聚对苯二甲酸乙二醇酯改性)和TPU(热塑性聚氨酯)聚合物打印的头部模型以及由粉末和树脂组成的两个头部模型上实现的。子弹的行为、变形、伤口通道和其他定性方面直接与Riva等人在《国际法律医学杂志》(Int J Legal Med) 135:2567-2579, 2021)中报告的真实案例的发现进行了比较,也与Riva等人在《法医科学杂志》(Forensic science)上创建的“开放式”头部模型进行了比较。最后,虽然这项研究的结果并没有完全满足模拟人类骨骼的要求,但它的概念是用容易获得的3D打印材料来复制特定病例的头部模型,这是非常有前途的。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
From digital to physical model: the use of 3D-printed models in wound ballistic reconstruction.

Synthetic models (also called "surrogates") simulating human tissues are widely used in wound ballistics. Although there are a large number of commercial models showing interesting properties, these are limited to generic shapes. The result of the interaction between the projectile and the target varies based on several parameters; therefore, using a case-specific, custom-shaped synthetic model would enhance the accuracy of the findings. For this purpose, the authors created, based on Post-Mortem Computed Tomography (PMCT) measurements, case specific 3D-printed synthetic models. The first ballistic tests were performed on simple plates printed with different materials and compared against polyurethan Synbone® products in order to select the most suited materials for synthetic head models. Further tests were realised on head models printed with PLA (polylactic acid), PETG (polyethylene terephthalate glycol-modified) and TPU (thermoplastic polyurethane) polymers as well as on two head models composed of powder and resin. The bullet's behaviour, its deformation, the wound channel and other qualitative aspects were directly compared to the findings of the real case reported in Riva et al in Int J Legal Med 135:2567-2579, 2021, as well as to the "open shape" head model created by Riva et al in Forensic Sci Int 294:150-159, 2019. Finally, although the results of this study did not completely fulfil the requirements to simulate human bones, its concept in reproducing case specific head models with easily available 3D printing materials, is very promising.

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来源期刊
CiteScore
5.80
自引率
9.50%
发文量
165
审稿时长
1 months
期刊介绍: The International Journal of Legal Medicine aims to improve the scientific resources used in the elucidation of crime and related forensic applications at a high level of evidential proof. The journal offers review articles tracing development in specific areas, with up-to-date analysis; original articles discussing significant recent research results; case reports describing interesting and exceptional examples; population data; letters to the editors; and technical notes, which appear in a section originally created for rapid publication of data in the dynamic field of DNA analysis.
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