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丽蝇科、麻蝇科和蝇科中一些具有重要法医意义的蝇类的触角感器。

Antennal sensilla of some forensically important flies in families Calliphoridae, Sarcophagidae and Muscidae.

作者信息

Sukontason Kom, Sukontason Kabkaew L, Piangjai Somsak, Boonchu Noppawan, Chaiwong Tarinee, Ngern-Klun Radchadawan, Sripakdee Duanghatai, Vogtsberger Roy C, Olson Jimmy K

机构信息

Department of Parasitology, Faculty of Medicine, Chiang Mai University, Chiang Mai 50200, Thailand.

出版信息

Micron. 2004;35(8):671-9. doi: 10.1016/j.micron.2004.05.005.

Abstract

Antennal sensilla of some forensically important fly species in the families Calliphoridae (Chrysomya megacephala, Chrysomya rufifacies, Chrysomya nigripes and Lucilia cuprina), Sarcophagidae (Parasarcophaga dux) and Muscidae (Musca domestica) were studied using scanning electron microscopy. Five types of sensilla were observed: trichoid, basiconic, coeloconic, styloconic and sensory pit. Only trichoid sensilla are found on the scape of the antenna, while both trichoid and styloconic sensilla are located on the antennal pedicels of all species studied. Basiconic sensilla are the most numerous of the sensilla found on the antennae of both sexes of all fly species studied and are comprised of two subtypes: large and small basiconic sensilla. Coeloconic sensilla are characterized by short pegs, with either grooved or smooth surfaces, that are sunken into deep depressions. No marked difference was observed in the number, morphological structure or distributional pattern of any of the sensilla among the species studied, with the exception of there being more numerous sensory pits detected in female P. dux compared to the other species. The suggested function of each antennal sensillum was based on comparison with results of other investigations on similar sensilla.

摘要

利用扫描电子显微镜对丽蝇科(大头金蝇、红头丽蝇、黑足丽蝇和铜绿蝇)、麻蝇科(红头亚麻蝇)和蝇科(家蝇)中一些具有重要法医意义的蝇类的触角感器进行了研究。观察到五种类型的感器:毛形感器、锥形感器、腔锥形感器、栓锥形感器和感觉窝。在触角的柄节上仅发现毛形感器,而在所研究的所有物种的触角梗节上均同时存在毛形感器和栓锥形感器。锥形感器是在所研究的所有蝇类雌雄两性触角上发现的数量最多的感器,由两个亚型组成:大型和小型锥形感器。腔锥形感器的特征是短栓,表面有凹槽或光滑,深陷于凹陷中。在所研究的物种中,除了在雌性红头亚麻蝇中检测到的感觉窝比其他物种更多之外,在任何感器的数量、形态结构或分布模式上均未观察到明显差异。每个触角感器的推测功能是基于与其他关于类似感器的研究结果进行比较得出的。

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