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Thermogenesis in decomposing carcasses

机译:分解尸体的生热

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It is of fundamental importance in forensic entomology that the factors controlling carcass temperatures during decomposition are thoroughly understood. The thermal environment to which fly larvae are exposed is the primary influence on their growth rate, and hence affects any estimate of minimum time since death using such specimens in homicide investigations. To date, much of the entomological research on maggot masses has focused on their elevation of carcass temperatures, with very little focus on the bacteria associated with larval activity. The aim of this study was to investigate the heat associated with decay and the types of bacteria present during the decomposition of a carcass, both in the presence and in the absence of maggots. Three treatments were imposed: fresh, frozen and maggot-infested, each consisting of five replicate pig carcasses. Temperature measurements and bacterial swabs were taken from the gastro-intestinal region of each pig and temperatures and bacterial communities compared between treatments. All carcasses reached average maximum temperatures above 32. °C in a temperature controlled room set at 23. °C. Treatment had no statistically significant effect on the temperatures recorded in each carcass but did significantly affect the community structure of the bacteria. However, bacterial community structure varied across time. This study suggests that bacterial metabolism plays a significant role in carcass thermogenesis, and that maggot masses, while contributing to localised heating within the carcass, may have less of a role in elevating carcass temperatures than previously assumed.
机译:在法医昆虫学中,至关重要的一点是,彻底了解分解过程中控制car体温度的因素。蝇蝇幼虫所处的热环境是对其生长速度的主要影响,因此会影响凶杀调查中使用此类标本的最短死亡时间估计。迄今为止,on虫的许多昆虫学研究都集中在focused体温度的升高上,而很少关注与幼虫活动有关的细菌。这项研究的目的是研究在有或没有and的情况下,与decay体分解相关的热量和分解过程中存在的细菌类型。进行了三种处理:新鲜,冷冻和mag感染,每种处理由五个重复的猪car体组成。从每只猪的肠胃区域进行温度测量和细菌拭子采集,并比较处理之间的温度和细菌群落。在设定为23°C的温度控制室中,所有car体均达到32.°C以上的平均最高温度。处理对每个car体记录的温度没有统计学上的显着影响,但确实显着影响了细菌的群落结构。但是,细菌群落结构随时间变化。这项研究表明细菌代谢在car体产热中起着重要作用,的质量虽然有助于the体内部的局部加热,但在car体温度升高中的作用可能比以前设想的要少。

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