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原子力显微镜作为用于纳米级法医调查的生物物理工具。

Atomic force microscopy as a biophysical tool for nanoscale forensic investigations.

作者信息

Yadavalli Vamsi K, Ehrhardt Christopher J

机构信息

Department of Chemical and Life Science Engineering, Virginia Commonwealth University, Richmond, VA 23284, USA.

Department of Forensic Science, Virginia Commonwealth University, Richmond, VA 23284, USA.

出版信息

Sci Justice. 2021 Jan;61(1):1-12. doi: 10.1016/j.scijus.2020.10.004. Epub 2020 Oct 24.

Abstract

The atomic force microscope (AFM) has found its way to the arsenal of tools available to the forensic practitioner for the analysis of samples at the nano and microscales. As a non-destructive probing tool that requires minimal sample preparation, the AFM is very attractive, particularly in the case of minimal or precious sample. To date, the use of the AFM has primarily been in the arena of imaging where it has been complementary to other microscopic examination tools. Forensic applications in the visual examination of evidence such as blood stains, questioned documents, and hair samples have been reported. While a number of reviews have focused on the use of AFM as an imaging tool for forensic analyses, here we not only discuss these works, but also point to a versatile enhancement in the capabilities of this nanoscale tool - namely its use for force spectroscopy. In this mode, the AFM can determine elastic moduli, adhesion forces, energy dissipation, and the interaction forces between cognate ligands, that can be spatially mapped to provide a unique spatial visualization of properties. Our goals in this review are to provide a context for this capability of the AFM, explain its workings, cover some exemplary works pertaining to forensic sciences, and present a critical analysis on the advantages and disadvantages of this modality. Equipped with this high-resolution tool, imaging and biophysical analysis by the AFM can provide a unique complement to other tools available to the researcher for the analysis and characterization of forensic evidence.

摘要

原子力显微镜(AFM)已成为法医从业者用于纳米和微观尺度样品分析的工具之一。作为一种所需样品制备极少的非破坏性探测工具,AFM极具吸引力,尤其是在样品量极少或极为珍贵的情况下。迄今为止,AFM的应用主要集中在成像领域,它与其他显微镜检查工具互为补充。已有报道将其应用于诸如血迹、可疑文件和毛发样本等证据的视觉检查方面。虽然已有多篇综述聚焦于AFM作为法医分析成像工具的应用,但在此我们不仅会讨论这些工作,还会指出这种纳米级工具功能的一种多功能增强——即其在力谱学方面的应用。在这种模式下,AFM可以测定弹性模量、粘附力、能量耗散以及同源配体之间的相互作用力,这些力可以进行空间映射以提供独特的属性空间可视化。我们撰写本综述的目的是为AFM的这种功能提供背景信息,解释其工作原理,涵盖一些与法医学相关的典型工作,并对这种方法的优缺点进行批判性分析。借助这种高分辨率工具,AFM进行的成像和生物物理分析可为研究人员用于法医证据分析和表征的其他工具提供独特的补充。

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