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Quantitative Scanning Probe Microscopy for Nanomechanical Forensics

机译:纳米机械法医学的定量扫描探针显微镜

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摘要

Atomic force microscopy (AFM) was used to assess the indentation modulus Ms and pull-off force Fpo in four case studies of distinct evidence types, namely hair, questioned documents, fingerprints, and explosive particle-surface interactions. In the hair study, Ms decreased and Fpo increased after adding conditioner and bleach to the hair. For the questioned documents, Ms and Fpo of two inks were markedly different; ballpoint pen ink exhibited smaller variations relative to the mean value than printer ink. The fingerprint case study revealed that both maximum height and Fpo decreased over a three-day period. Finally, the study on explosive particle-surface interactions illustrated that two fabrics exhibited similar Ms, but different Fpo. Overall, it was found that AFM addresses needs in forensic science as defined by several federal agencies, in particular an improved ability to expand the information extracted from evidence and to quantify its evidentiary value.
机译:在四种不同证据类型的案例研究中,使用原子力显微镜(AFM)来评估压痕模量Ms和拉力Fpo,分别是头发,有问题的证件,指纹和爆炸性的颗粒表面相互作用。在头发研究中,添加护发素和漂白剂后,Ms降低,Fpo升高。对于受质疑的文件,两种墨水的女士和Fpo明显不同;圆珠笔墨水相对于平均值的变化比打印机墨水小。指纹案例研究显示,最大身高和Fpo在三天内均下降。最后,对爆炸性粒子-表面相互作用的研究表明,两种织物的Ms相似,但Fpo不同。总体而言,发现原子力显微镜可以满足几个联邦机构定义的法医学领域的需求,尤其是可以扩展从证据中提取信息并量化其证据价值的能力。

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