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Advancing the Forensic Estimation of Time Since Death

机译:推进以来死亡以来的一项法医估算

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摘要

Temperature modelling at a crime scene is crucial for forensic investigators to estimate the minimum postmortem interval (PMImin) of a cadaver. Upon death, insect species deposit eggs, and the resulting rate of development of the larvae is primarily temperature driven. By knowing the historical ambient temperature, development stage, and specific species of larva found on a cadaver, an accurate estimate can be made for the time since death. PMImin cannot be calculated without accurate historical temperature. However, there is currently no method to determine the actual internal temperature of the cadaver prior to discovery. In this research we examine the possibility of inferring the thermal environment of the growing larvae and extracting a characteristic heat flux profile intrinsic to the growing insect population. The external environmental temperature can be combined with this profile to provide a much more accurate predictor of the temperature experienced by the larvae than is currently used and consequently a more reliable estimate of the PMImin.
机译:犯罪现场的温度建模对于法医调查人员估计尸体的最小死后时间间隔(PMImin)至关重要。昆虫死亡后会产卵,由此产生的幼虫发育速度主要由温度驱动。通过了解历史环境温度、发育阶段和尸体上发现的特定幼虫种类,可以准确估计死亡后的时间。如果没有准确的历史温度,就无法计算PMImin。然而,目前还没有在发现尸体之前确定尸体内部实际温度的方法。在这项研究中,我们检验了推断生长幼虫的热环境和提取生长昆虫种群固有的特征热流分布的可能性。外部环境温度可与该剖面相结合,以提供比目前使用的更准确的预测幼虫经历的温度,从而更可靠地估计PMImin。

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