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Asker, Akershus, Norge
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Kværkeby Mose, Midtsjælland, Denmark
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Jernhatten
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Gilsätra Öland
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Kværkeby Mose, Midtsjælland, Denmark
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Odontoloxozus longicornis males guarding a piece of rotting Opuntia. Male body size is highly variable in this species. Some males are about the same size as females, while others are more than twice as large. Large males stake out territories on suitable oviposition substrates, mate with a female, and may then guard her through multiple oviposition and mating bouts. Small males often linger in the periphery and sneak in to score a mating when the large, guarding male is distracted by a fight with another male or the arrival of a new female.
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Sepedon and Tetaoncera : Sepedon fuscipennis Loew.: 1. Larva, dorsal view; 2. Larva, lateral view; 3. Puparium, dorsal view; 4. Puparium, lateral view; 5. Open puparium; 6. Seed floating which the puparium simulates; 7. Imago, dorsal view; 8. Imago, lateral view.. Tetanoccera pictipes Loew: 9. Larva, dorsal view; 10. Larva, lateral view; 11. Puparium, lateral view; 12. Puparium, dorsal view; 13. Imago. dorsal view; 14. Imago, lateral view
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Xiao-Yan Liu, Ding Yang, Emilia P. Nartshuk
Zookeys
Figures 3–7. Thressa bimaculata sp. n., male. 3 head, dorsal view 4 head, lateral view 5 mesonotum and scutellum, dorsal view 6 mesonotum and scutellum, lateral view 7 wing.
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Saeed Mohamadzade Namin, Jamasb Nozari
Zookeys
Figures 4–8. Urophora merzi sp. n., 4 head in profile 5 aculeus 6 aculeus tip 7 male terminalia 8 epandrium.
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Junhua Zhang, Ding Yang, Wayne N. Mathis
Zookeys
Figures 9–16.Rhynchopsilopa huangkengensis sp. n. (male) 9 foreleg 10 midleg 11 hindleg 12 terminalia (epandrium, cercus, postsurstyli, aedeagus), posterior view 13 terminalia (epandrium, cercus, postsurstyli, aedeagus, phallapodeme, gonite/subepandrial plate, hypandrium), lateral view 14 terminalia (presurstyli, postsurstyli, gonite/subepandrial plate, hypandrium), ventral view 15 aedeagus and phallapodeme, ventral view. (female) 16 Ventral receptacle.
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Wayne N. Mathis, Tadeusz Zatwarnicki
Zookeys
Figure 68.Distribution of Polytrichophora rostra sp. n.
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Ante Vujić, Snežana Radenković, Sonja Trifunov, Tijana Nikolić
Zookeys
Figure 11.Cheilosia barbafacies sp. n., antennae, lateral view: A male B female. Scale in mm.
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Menno Reemer, Gunilla Ståhls
Zookeys
Figures 61–67.61–62 Cervicorniphora alcicornis male (Australia, coll. USNM): 61 habitus lateral 62 genitalia lateral 63–65 Chrysidimyia chrysidimima male (holotype): 63 habitus dorsal 64 habitus lateral 65 genitalia lateral 66–67 Chrysidimyia chrysidimima male (holotype): 66 head frontal 67 head lateral.
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Maurizio Mei, Daniel Whitmore, Giuseppe Lo Giudice, Pierfilippo Cerretti
Zookeys
Figures 35−38.Third instar and puparium of Centrophlebomyia anthropophaga (Italy) 35 last segment bearing posterior spiracle in posterior view 36 last segment bearing posterior spiracle in lateral view 37 posterior spiracles in posterior view 38 puparium in dorsal view.
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Mírian N. Morales, Gunilla Ståhls, Heikki Hippa
Zookeys
Figures 9–15.Meropidia flavens Hippa & Ståhls, sp. n., Holotype 9 head, anterior view 10 head, lateral vie 11 habitus dorsa 12 habitus lateral 13–15 labels.
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Yuchen Ang, Ling Jing Wong, Rudolf Meier
Zookeys
Figure 6.Copulatory profile for Perochaeta orientalis, as described in Section 2 (Copulation). Horizontal bars in graph indicate point in time (X-axis) where then the particular behaviour (Y-axis) is performed. The profile begins from when the male mounts the female, and ends when they begin to separate (total time = 72m 30s).
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Viviane Rodrigues de Sousa, Márcia Souto Couri
Zookeys
Figures 3–7.Male terminalia of Japanagromyza inferna Spencer 3 sternite 5 4 epandrium, cercal plate and surstylus 5 hypandrium 6 phallapodeme, hypandrium, phallus 7 ejaculatory apodeme.
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Antti Haarto, Gunilla Ståhls
Zookeys
Figure 14.Abdomen of female. A Melanostoma scalare B Melanostoma certum C Melanostoma mellarium D Melanostoma mellinum.
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Antti Haarto, Gunilla Ståhls
Zookeys
Figure 16.Lateral view of male scutum. A Melanostoma mellinum and B Melanostoma certum.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.
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All Biocode files are based on field identifications to the best of the researcher’s ability at the time.