Taudte Regina Verena, Beavis Alison, Blanes Lucas, Cole Nerida, Doble Philip, Roux Claude
Centre for Forensic Science, University of Technology, P.O. Box 123, Broadway, Sydney, NSW 2007, Australia.
Biomed Res Int. 2014;2014:965403. doi: 10.1155/2014/965403. Epub 2014 May 22.
In recent years, forensic scientists have become increasingly interested in the detection and interpretation of organic gunshot residues (OGSR) due to the increasing use of lead- and heavy metal-free ammunition. This has also been prompted by the identification of gunshot residue- (GSR-) like particles in environmental and occupational samples. Various techniques have been investigated for their ability to detect OGSR. Mass spectrometry (MS) coupled to a chromatographic system is a powerful tool due to its high selectivity and sensitivity. Further, modern MS instruments can detect and identify a number of explosives and additives which may require different ionization techniques. Finally, MS has been applied to the analysis of both OGSR and inorganic gunshot residue (IGSR), although the "gold standard" for analysis is scanning electron microscopy with energy dispersive X-ray microscopy (SEM-EDX). This review presents an overview of the technical attributes of currently available MS and ionization techniques and their reported applications to GSR analysis.
近年来,由于无铅和无重金属弹药的使用日益增加,法医科学家对有机枪弹残留物(OGSR)的检测和解释越来越感兴趣。环境和职业样本中类似枪弹残留物(GSR)颗粒的鉴定也促使了这一情况。人们对各种检测OGSR的技术进行了研究。与色谱系统联用的质谱(MS)因其高选择性和灵敏度而成为一种强大的工具。此外,现代质谱仪器可以检测和识别许多可能需要不同电离技术的炸药和添加剂。最后,质谱已应用于OGSR和无机枪弹残留物(IGSR)的分析,尽管分析的“金标准”是扫描电子显微镜与能量色散X射线显微镜(SEM-EDX)联用。本文综述了当前可用的质谱和电离技术的技术特性及其在枪弹残留物分析中的应用报道。