金属在潜在手印中的转移和持久性。

Rhiannon E Boseley, D. Howard, M. Hackett, S. Lewis
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引用次数: 2

摘要

在法医学中,对物质转移和持久性的认识和理解是解释痕量证据所固有的,可以提供有关犯罪活动水平的重要信息。长期以来,检测指纹残留物中的金属离子一直是法医科学领域的兴趣所在,因为有可能将痕量金属离子剖面与特定金属物体(例如枪支或爆炸物处理)的先前活动联系起来。不幸的是,在足够的空间分辨率下可视化痕量金属离子以确定其在手印(微米级)内的分布的成像能力以前是不可用的。在这里,我们首次展示了金属在指印中的转移和持久性,在微米空间分辨率下,使用同步加速器源x射线荧光显微镜。这些信息可能构成未来金属基探测战略的关键基线。在短暂处理枪管、弹壳和派对烟花之前和之后,警方都采集了指纹,以证明金属的转移。结果表明,与这些物体接触后,金属含量增加,关键是,在处理不同的物体后,观察到不同的金属离子增加模式。持久性研究表明,这些金属被去除和转移一样容易,只要短暂的洗手,就能成功地去除随后手印上的金属残留物。利用x射线吸收近边缘结构光谱作图的初步工作强调了该技术在区分潜在手印中不同化学形式的金属和金属离子方面的潜在用途。预计这些发现现在可以用来协助今后的工作,以促进痕量金属探测试验和手印开发程序。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The transfer and persistence of metals in latent fingermarks.
In forensic science, knowledge and understanding of material transfer and persistence is inherent to the interpretation of trace evidence and can provide vital information on the activity level surrounding a crime. Detecting metal ions in fingermark residue has long been of interest in the field of forensic science, due to the possibility of linking trace metal ion profiles to prior activity with specific metal objects (e.g. gun or explosive handling). Unfortunately, the imaging capability to visualise trace metal ions at sufficient spatial resolution to determine their distribution within a fingermark (micron level) was not previously available. Here, we demonstrate for the first time transfer and persistence of metals in fingermarks, at micron spatial resolution, using synchrotron sourced X-ray fluorescence microscopy. Such information may form a critical baseline for future metal-based detection strategies. Fingermarks were taken before and after brief handling of a gun barrel, ammunition cartridge case and party sparkler to demonstrate the transfer of metals. The results reveal increased metal content after contact with these objects, and critically, a differential pattern of metal ion increase was observed after handling different objects. Persistence studies indicate that these metals are removed as easily as they are transferred, with a brief period of hand washing appearing to successfully remove metallic residue from subsequent fingermarks. Preliminary work using X-ray absorption near edge structure spectroscopic mapping highlighted the potential use of this technique to differentiate between different chemical forms of metals and metal ions in latent fingermarks. It is anticipated that these findings can now be used to assist future work for the advancement of trace metal detection tests and fingermark development procedures.
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