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首页> 外文期刊>International Journal of Legal Medicine >Cutting crime: the analysis of the “uniqueness” of saw marks on bone
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Cutting crime: the analysis of the “uniqueness” of saw marks on bone

机译:切割犯罪:对骨头上锯痕“独特性”的分析

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Witness marks produced on bone by the use of saws have traditionally been examined using stereomicroscopy. The marks are typically found on the kerf wall or floor and give important information about the implement that made them. This paper describes a new approach to the analysis of witness marks left on kerf walls and floors from crimes involving dismemberment. Previously, two types of marks have been identified: deep furrows formed during the pull stroke and fine striations formed on the push stroke. These types of striation allow the class of saw to be identified, but not an individual saw. With the advent of environmental scanning electron microscopy (ESEM), insulating materials can now be examined without the need for conductive coatings to be applied. This allows materials to be examined at higher magnifications than those available with stereomicroscopy. Here we report on a new, third type of striation that is visible at higher magnifications on ESEM images. These striations are formed from the imperfections on the cutting teeth of saws and give real possibilities of uniquely identifying whether or not a particular saw was used to cause the mark. In blind trials conducted on sawing of nylon 6.6, different individual saws could be successfully identified even if different people used the saw. We discuss ways in which these results can be extended to bone and how this may assist in the investigation of the act of dismemberment.
机译:传统上,使用立体显微镜检查了使用锯在骨头上产生的见证标记。这些标记通常在切缝的墙壁或地板上发现,并提供有关制作它们的工具的重要信息。本文介绍了一种新方法,用于分析涉及肢解的犯罪遗留在切口壁和地板上的证人标记。以前,已经识别出两种类型的标记:在拉动冲程中形成的深沟和在推动冲程中形成的细条纹。这些条纹类型可以识别锯的类别,但不能识别单个锯。随着环境扫描电子显微镜(ESEM)的出现,现在可以检查绝缘材料,而无需施加导电涂层。与立体显微镜相比,这可以更高的倍率检查材料。在这里,我们报告了一种新的第三种条纹,该条纹在ESEM图像上以更高的放大倍率可见。这些条纹是由锯的切割齿上的瑕疵形成的,并提供了唯一识别是否使用特定锯引起标记的真实可能性。在对尼龙6.6进行锯切的盲试验中,即使使用不同的人,也可以成功地识别出不同的单个锯。我们讨论了将这些结果扩展到骨骼的方式,以及这如何有助于对肢解行为的研究。

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