Husak Jennifer
Crime Scene Unit, Waco Police Department, Crime Scene Investigator, Waco, Texas, USA.
J Forensic Sci. 2022 May;67(3):1191-1197. doi: 10.1111/1556-4029.14954. Epub 2021 Dec 15.
When a firearm is discharged, the highest concentration of gunshot residue (GSR) is located on a shooter's hands, forearms, and clothing. Currently, collecting GSR from an individual's hands is accomplished with a carbon disk that is submitted for confirmatory analysis in a forensic laboratory. Presumptive chemical tests can be performed in the field, but these tests consume a portion of the GSR particles leaving a reduced amount of evidence available to be collected and sent to a forensic laboratory. An abundance of research exists for detecting GSR particles instantly on different fabrics using an alternate light source (ALS). This study expanded on that research and developed a noninvasive, visual examination to detect GSR on a suspected shooter's hands without destroying or removing any particles prior to collection. The hands of individuals who recently discharged a firearm were examined under a light source between 475 and 530 nm and an infrared (IR) camera. The fluorescent particles observed on a shooter's hands under 520 nm were similar in size and appearance to GSR particles observed on fabrics under an ALS. The fluorescent particles were collected and analyzed for GSR, and the results indicated that GSR particles were present. More testing needs to be conducted to determine if the fluorescent particles observed are inorganic or organic GSR particles. There is also potential to detect GSR under IR light; however, more research needs to be conducted to determine the composition of the particles observed after image enhancement.
枪支发射时,枪火残留物(GSR)的最高浓度位于射手的手部、前臂和衣物上。目前,从个人手上采集GSR是通过碳盘来完成的,采集后的碳盘会被送往法医实验室进行确证分析。现场可以进行推定化学测试,但这些测试会消耗一部分GSR颗粒,从而减少了可供采集并送往法医实验室的证据量。已有大量研究致力于利用交替光源(ALS)即时检测不同织物上的GSR颗粒。本研究在此基础上进行拓展,开发了一种非侵入性的目视检查方法,用于在不破坏或移除疑似射手手上任何颗粒的情况下检测GSR,且在采集前即可进行。近期开过枪的人员的手部在波长介于475至530纳米的光源及红外(IR)摄像机下接受检查。在520纳米波长下,射手手上观察到的荧光颗粒在大小和外观上与在ALS下织物上观察到的GSR颗粒相似。这些荧光颗粒被收集起来并进行GSR分析,结果表明存在GSR颗粒。还需要进行更多测试,以确定观察到的荧光颗粒是无机还是有机GSR颗粒。在红外光下检测GSR也具有可能性;然而,还需要进行更多研究来确定图像增强后观察到的颗粒的成分。