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在恒温下拟蚤斯氏长足虻的发育及其在推断死亡时间中的意义。

Development of Megaselia scalaris at constant temperatures and its significance in estimating the time of death.

机构信息

Department of Forensic Medicine, Soochow University, Ganjiang East Road, Suzhou, 215000, China.

Criminal Police Branch, Zhongshan Public Security Bureau, Zhongshan, China.

出版信息

Int J Legal Med. 2024 Jan;138(1):97-106. doi: 10.1007/s00414-023-02993-4. Epub 2023 Apr 4.

Abstract

Megaselia scalaris (Schmitz, 1938) (Diptera: Phoridae) is a common insect in forensic science that is frequently found in indoor cases, particularly on corpses in closed environments. Although this species is useful for estimating the minimum postmortem interval (PMI) in the absence of Calliphoridae, there is a lack of data on its development in China. Herein, we studied the development of M. scalaris exposed to seven constant temperatures ranging from 16 to 34 °C. The mean (± SD) developmental durations of M. scalaris from egg to adult stage at 16, 19, 22, 25, 28, 31, and 34 °C were 1486.9 ± 75.3, 823.7 ± 42.8, 448.2 ± 59.8, 417.7 ± 19.7, 297.2 ± 27.3, 272.9 ± 10.4, and 253.0 ± 5.0 h, respectively. The mean (± SE) lower developmental threshold temperature (T) and the thermal summation constant (K) were determined by a linear model as 12.69 ± 0.3 °C and 4965.8 ± 227.9-degree hours, respectively. A nonlinear model estimated the lower developmental threshold temperature, intrinsic optimum temperature, and upper lethal developmental threshold temperature as 14.58, 21.00, and 34.15 °C, respectively. We established three development models to estimate the age of the immature insect, namely the isomegalen diagram, isomorphen diagram, and thermal summation model. In addition, a regression analysis of the relationship between body length and total development time from hatching to pupariation was performed. Our findings provide a basis for applications of M. scalaris in PMI estimations.

摘要

斯氏巨蚤(Schmitz,1938)(双翅目:蚤科)是法医科学中一种常见的昆虫,常在内科案件中发现,特别是在封闭环境中的尸体上。虽然这种物种在没有丽蝇科的情况下对估计最小死后间隔(PMI)很有用,但在中国关于它的发育数据却很少。在此,我们研究了在 16 至 34°C 的 7 个恒定温度下暴露的斯氏巨蚤的发育情况。在 16、19、22、25、28、31 和 34°C 下,从卵到成虫阶段的斯氏巨蚤的平均(±SD)发育时间分别为 1486.9±75.3、823.7±42.8、448.2±59.8、417.7±19.7、297.2±27.3、272.9±10.4 和 253.0±5.0 h。线性模型确定的平均(±SE)较低发育温度(T)和热累积常数(K)分别为 12.69±0.3°C 和 4965.8±227.9 度小时。非线性模型估计较低的发育温度、内在最适温度和上限致死发育温度分别为 14.58、21.00 和 34.15°C。我们建立了三个发育模型来估计不成熟昆虫的年龄,即等体长图、等变体长图和热累积模型。此外,还进行了孵化到蛹化的体长与总发育时间的回归分析。我们的研究结果为斯氏巨蚤在 PMI 估计中的应用提供了依据。

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