Department of Chemistry , University at Albany , SUNY, 1400 Washington Avenue , Albany , New York 12222 , United States.
Thermo Fisher Scientific , 2 Radcliff Rd. , Tewksbury , Massachusetts 01876 , United States.
Anal Chem. 2019 Sep 17;91(18):11731-11737. doi: 10.1021/acs.analchem.9b02306. Epub 2019 Aug 30.
Gunshot residue (GSR) is potentially key evidence during a criminal investigation of a shooting accident. Current standardized forensic science methods target the detection of inorganic GSR (IGSR). In this proof-of-concept study, a new two-step method for the detection and identification of organic GSR (OGSR) is proposed. This method utilizes highly sensitive fluorescence hyperspectral imaging of a sample area to detect potential GSR particles, followed by confirmatory identification of the detected particles using Raman microspectroscopy. In this study, two different GSR samples on adhesive tape substrates were created. One sample was made by manually placing a known amount of OGSR particles onto an adhesive tape substrate. The second sample mimicked a real crime scene situation and had an unknown number of GSR particles mounted onto an adhesive tape substrate using a most common tape-lifting procedure for the recovery of GSR from the skin of a suspect and other surfaces. These two samples were subjected to the developed two-step analysis method. It was found that this method was accurately able to detect and identify all OGSR particles. Representative spectra of OGSR particles showed characteristic Raman peaks at 850 cm, 1287 cm, and 2970 cm. This methodology offers a promising means to meet current needs within the framework of GSR analysis by providing a way to accurately detect and identify OGSR.
射击残留物(GSR)是枪击事故刑事调查中潜在的关键证据。当前标准化的法医科学方法针对的是无机 GSR(IGSR)的检测。在这项概念验证研究中,提出了一种新的两步法,用于检测和识别有机 GSR(OGSR)。该方法利用对样品区域的高灵敏度荧光高光谱成像来检测潜在的 GSR 颗粒,然后使用拉曼微光谱对检测到的颗粒进行确认鉴定。在这项研究中,在胶带衬底上创建了两个不同的 GSR 样本。一个样本是通过手动将已知量的 OGSR 颗粒放置在胶带衬底上制成的。第二个样本模拟了真实的犯罪现场情况,将数量未知的 GSR 颗粒使用最常见的胶带提起程序安装在胶带衬底上,用于从嫌疑人皮肤和其他表面回收 GSR。这两个样本都经过了开发的两步分析方法的测试。结果发现,该方法能够准确地检测和识别所有的 OGSR 颗粒。OGSR 颗粒的代表性光谱在 850 cm、1287 cm 和 2970 cm 处显示出特征拉曼峰。该方法为满足 GSR 分析框架内的当前需求提供了一种有前途的手段,为准确检测和识别 OGSR 提供了一种方法。