Results 181 to 190 of about 5,789 (220)
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Hoplitimyia, a New Genus of Stratiomyidae

Annals of the Entomological Society of America, 1934
Several species of Stratiomyidae that have been included in Stratiomys Geoffroy are sufficiently different from the typical species of that genus to warrant separate generic treatment. To my knowledge, there are no intermediate or connectant forms. In general appearance, they are wasplike rather than beelike, as are the true species of Stratiomys .
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The Chinese Oxycera (Diptera: Stratiomyidae) [PDF]

open access: possible, 1993
This paper describes 5 unnamed and redescribes 4 named species of the genus Oxycera from China. There are another 4 previously named Chinese species of this genus where no material is available to this study, and they are introduced according to original descriptions. The male genitalia of 5 species are illustrated.
Yang, Ding   +3 more
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?? ?????????????????? ???????? ?????????????????????? ?????????? ??????-?????????????? (Stratiomyidae, Diptera)

2022
On the basis of studying type-specimens from the collection of the Institute of Zoology of the Academy of Sciences of the Ukrainian SSR in Kiev and the Zoological ; Institute of the Academy of Sciences of the USSR in Leningrad the following new synonyms were established: 1.Oxycera ucrainica Paramonov, 1926 (Hermione) = Oxycera trilineata Fabric ?? u s,
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A Review of the Nearctic Stratiomyini (Diptera, Stratiomyidae)

Annals of the Entomological Society of America, 1952
James (1936) proposed a classification of the Nearctic Stratiomyinae, based particularly on antennal structure and wing venation. Although key presented in that work requires some modification, and some details, involving particularly generic reassignment of some species referred to Odontomyia , need to be reconsidered, subsequent experience with ...
Maurice T. James, George C. Steyskal
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Some Evolutionary Trends in the Stratiomyidae

Annals of the Entomological Society of America, 1936
Recently systematists have been moving away from the description of species and toward a refinement of the systems already established: to monographs, faunistic treatments, and phylogenies. This more complex work has led to skepticism in certain departments and has resulted in the general feeling that categories such as families, genera, and even ...
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CHROMOSOMES OF RHAGIONIDAE, STRATIOMYIDAE AND XYLOMYIDAE (DIPTERA)

Canadian Journal of Genetics and Cytology, 1973
The chromosome complements of 22 species of Stratiomyidae, 1 of Rhagionidae and 1 of Xylomyidae are described. Chromosome numbers range from 2n = 8 to 16 with 16 as the most common number and presumably the primitive number. The 56 chromosome complements averaged 55.2 μ, in TCL which seems to increase with increasing number of chromosomes.
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?????????? ?????? ???????? Saruga ?? ?????????????????? ?????????? ???????? ?????????? Pachygasterinae (Diptera, Stratiomyidae)

2023
Saruga esenini sp. n. is described from Viet-Nam; reality of the genus is confirmed by conic scutellum, sharply differing it from representatives of other genera with elongated thin scutellum. Type material of (lie new species is deposited at the Institute of Evolutionary Morphology and Ecology, the Russian Academy of Sciences (Moscow).
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The Chinese Clitellaria (Diptera: Stratiomyidae)

1992
The Chinese species of Clitellaria (=Taurocera syn. n.) are revised. Nine species are described or redescribed and a key to these is presented. The following 7 species are described as new to science: chikuni, crassistilus, flavipilosa, kunmingana, longipilosa, mediflava, and nigra.
Yang, Ding   +3 more
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A Review of the Nearctic Beridinae (Diptera, Stratiomyidae)

Annals of the Entomological Society of America, 1939
This paper is presented in the hope that it may serve to identify Nearctic specimens belonging to this subfamily of Stratiomyidae. It is complete, so far as our knowledge goes, for the Nearctic region, including all the United States, unless some Neotropical species may extend into our Southwest.
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การเจริญเติบโตของหนอนแมลงวันลาย (Diptera: Stratiomyidae) และความสามารถในการย่อยสลายกากจากการแปรรูปอาหาร

แมลงวันลาย (Diptera: Stratiomyidae) เป็นทางเลือกหนึ่งในการจัดการขยะอินทรีย์ โดยหนอนของแมลงวันลายสามารถบริโภคและย่อยสลายสารอินทรีย์ได้ถึง 70% ในขณะเดียวกันยังสามารถเปลี่ยนแปลงสารอินทรีย์เป็นชีวมวลร่างกายและปุ๋ยชีวภาพได้ ร้านค้าส่วนใหญ่ในเมืองที่มีการแปรรูปอาหารไม่ได้นำกากจากการแปรรูปไปใช้ประโยชน์เช่นการใช้เป็นอาหารสัตว์หรือแปรรูปเป็นผลิตภัณฑ์บางอย่างได ...
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