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Application of Receiver Operating Characteristic (ROC) Curves for Explosives Detection Using Different Sampling and Detection Techniques

机译:接收器工作特性(ROC)曲线在采用不同采样和探测技术的爆炸物探测中的应用

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摘要

Reported for the first time are receiver operating characteristic (ROC) curves constructed to describe the performance of a sorbent-coated disk, planar solid phase microextraction (PSPME) unit for non-contact sampling of a variety of volatiles. The PSPME is coupled to ion mobility spectrometers (IMSs) for the detection of volatile chemical markers associated with the presence of smokeless powders, model systems of explosives containing diphenylamine (DPA), 2,4-dinitrotoluene (2,4-DNT) and nitroglycerin (NG) as the target analytes. The performance of the PSPME-IMS was compared with the widely accepted solid-phase microextraction (SPME), coupled to a GC-MS. A set of optimized sampling conditions for different volume containers (1–45 L) with various sample amounts of explosives, were studied in replicates (n = 30) to determine the true positive rates (TPR) and false positive detection rates (FPR) for the different scenarios. These studies were obtained in order to construct the ROC curves for two IMS instruments (a bench-top and field-portable system) and a bench top GC-MS system in low and high clutter environments. Both static and dynamic PSPME sampling were studied in which 10–500 mg quantities of smokeless powders were detected within 10 min of static sampling and 1 min of dynamic sampling.
机译:首次报告的是接收器工作特性(ROC)曲线,用于描述吸附剂涂层圆盘,平面固相微萃取(PSPME)单元的性能,该单元用于非接触式多种挥发物采样。 PSPME与离子迁移谱仪(IMS)耦合,用于检测与无烟粉末的存在有关的挥发性化学标记物,包含二苯胺(DPA),2,4-二硝基甲苯(2,4-DNT)和硝酸甘油的炸药模型系统(NG)作为目标分析物。将PSPME-IMS的性能与广为接受的固相微萃取(SPME)以及GC-MS进行了比较。一式两份(n = 30)研究了一组不同取样量的炸药的不同容量容器(1-45 L)的一组优化采样条件,确定了真假率(TPR)和假阳性率(FPR)不同的场景。获得这些研究结果是为了在低杂波环境和高杂波环境中构建两种IMS仪器(台式和现场便携式系统)和台式GC-MS系统的ROC曲线。研究了静态和动态PSPME采样,其中在静态采样的10分钟和动态采样的1分钟内检测到10–500 mg量的无烟粉末。

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