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Attenuated Total Reflectance-FT-IR Imaging for Rapid and Automated Detection of Gunshot Residue

机译:衰减全反射-FT-IR成像,可快速自动检测枪支残留物

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摘要

An alternative approach for the nondestructive, rapid and selective detection of gunshot residue (GSR) was investigated. A cloth substrate containing GSR particles expelled during a firearm discharge was used as an analog for the clothing of a shooting victim or a suspect discharging a firearm. An established and efficient procedure for GSR collection (tape lifting) was utilized to recover GSR particles from the cloth substrate. Microscopic-attenuated total reflectance (ATR) Fourier transform (FT) infrared (IR) spectroscopic imaging rapidly and automatically scanned large areas of the tape collection substrate and detected varying morphologies (microscopic and macroscopic) and chemical compositions (organic and inorganic) of GSR. The "spectroscopic fingerprint" of each GSR type provided unique virbrational modes, which were not characteristic of the tape collection substrate or the cloth debris which was also recovered. ATR images (maps) targeted the detection of these unique chemical markers over the mapped area. The hues of the ATR images were determined by the intensity of the signal for the chemical marker of each analyte. The spatial resolution of the technique was determined to be 4.7 μm. Therefore, all GSR particles sized 4.7 μm or larger will be resolved and detected on the tape substrate using micro-ATR imaging.
机译:研究了一种用于枪支残留物(GSR)的无损,快速和选择性检测的替代方法。包含枪支放电过程中排出的GSR颗粒的布基被用作射击者或犯罪嫌疑人的枪支服装的类似物。利用已建立的有效的GSR收集程序(卷带提升)从布料基材中回收GSR颗粒。显微衰减的全反射(ATR)傅立叶变换(FT)红外(IR)光谱成像可快速自动扫描磁带收集基材的大面积区域,并检测出GSR的各种形态(微观和宏观)以及化学成分(有机和无机)。每种GSR类型的“光谱指纹”都提供了独特的振动模式,这不是磁带回收基材或布屑的特征,后者也可以回收。 ATR图像(地图)的目标是在映射区域内检测这些独特的化学标记。 ATR图像的色调取决于每种分析物的化学标记物的信号强度。该技术的空间分辨率确定为4.7μm。因此,将使用micro-ATR成像在磁带基材上分辨并检测所有大小为4.7μm或更大的GSR颗粒。

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