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Estimation of the age of human bloodstains under the simulated indoor and outdoor crime scene conditions by ATR-FTIR spectroscopy

机译:通过ATR-FTIR光谱估计在模拟的室内和室外犯罪现场条件下的人类血迹年龄

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摘要

Estimation of the age of human bloodstains is of great importance in forensic practices, but it is a challenging task because of the lack of a well-accepted, reliable, and established method. Here, the attenuated total reflection (ATR)-Fourier transform infrared (FTIR) technique combined with advanced chemometric methods was utilized to determine the age of indoor and outdoor bloodstains up to 107 days. The bloodstain storage conditions mimicked crime scene scenarios as closely as possible. Two partial least squares regression models—indoor and outdoor models with 7–85 days—exhibited good performance for external validation, with low values of predictive root mean squared error (5.83 and 4.77) and high R2 values (0.94 and 0.96) and residual predictive deviation (4.08 and 5.14), respectively. Two partial least squares–discriminant analysis classification models were built and demonstrated excellent distinction between fresh (age ≤1 d) and older (age >1 d) bloodstains, which is highly valuable for forensic investigations. These findings demonstrate that ATR-FTIR spectroscopy coupled with advanced chemometric methods can be employed as a rapid and non-destructive tool for age estimation of bloodstains in real-world forensic investigation.
机译:估计人类血迹的年龄在法医实践中非常重要,但是由于缺乏公认的,可靠的和成熟的方法,这是一项具有挑战性的任务。在这里,采用衰减全反射(ATR)-傅立叶变换红外(FTIR)技术与先进的化学计量学方法相结合来确定室内和室外血迹的最长寿命为107天。血迹存储条件尽可能地模仿了犯罪现场的情况。两种偏最小二乘回归模型(室内和室外模型为7–85天)表现出良好的外部验证性能,具有较低的预测均方根误差值(5.83和4.77)和较高的R 2 值(0.94和0.96)和剩余预测偏差(4.08和5.14)。建立了两个偏最小二乘判别分析分类模型,并证明了新鲜(年龄≤1d)和较旧(年龄> 1 d)血迹之间的出色区别,这对于法医调查非常有价值。这些发现表明,ATR-FTIR光谱技术与先进的化学计量学方法相结合,可以用作在现实世界中的法医研究中估计血迹年龄的快速且无损的工具。

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