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628 results for “Sarcophagidae”
Fig. 4 in Taxonomic revision of Australian Amobia Robineau-Desvoidy, 1830 (Sarcophagidae: Miltogramminae): integrating morphology and genetics finds a new species and tackles old problems
Fig. 4. Amobia burnsi (Malloch, 1930), ♂, NSW, North Head, Sydney Harbour, 14 Feb. 1978, G. Daniels leg. (AM) A. Habitus, lateral view. B. Head, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Abdomen, dorsal view. F. Left wing, dorsal view. G. Head, anterior view. Scale bars: 1 mm.
Fig. 1 in Taxonomic revision of Australian Amobia Robineau-Desvoidy, 1830 (Sarcophagidae: Miltogramminae): integrating morphology and genetics finds a new species and tackles old problems
Fig. 1. Maximum likelihood phylogenetic tree indicating the placement of Amobia among the global Miltogramminae, inferred from COI, CYTB, ND4 and EF1α sequence data. With the exception of the three newly sequenced Australian Amobia and Macronychia rubesca, data was acquired from Piwczyński et al. (2017). Node support values are shown for both maximum likelihood analysis (bootstrap support, 1000 iterations; in bold font) and Bayesian analysis (posterior probability, 40 million generations), 'NA' indicates nodes resolved that were not resolved by the Bayesian analysis. Branch length scale = 0.3 nucleotide substitutions per site (calculated by the GTR+G nucleotide substitution model).
Fig. 6 in Taxonomic revision of Australian Amobia Robineau-Desvoidy, 1830 (Sarcophagidae: Miltogramminae): integrating morphology and genetics finds a new species and tackles old problems
Fig. 6. Amobia serpenta sp. nov., holotype, ♂, NT, Serpentine Gorge, West MacDonnell National Park, 13 Nov. 2017, Johnston, Wallman and Szpila leg. (ANIC). A. Habitus, lateral view. B. Head, lateral view. C. Habitus, dorsal view. D. Head, dorsal view. E. Abdomen, dorsal view. F. Left wing, dorsal view. G. Head, anterior view. Scale bars: 1 mm.
Fig. 3 in Taxonomic revision of Australian Amobia Robineau-Desvoidy, 1830 (Sarcophagidae: Miltogramminae): integrating morphology and genetics finds a new species and tackles old problems
Fig. 3. Amobia auriceps (Baranov, 1935), male terminalia, QLD, Cairns, 1919, J.F. Illingworth leg. (BM). A. Epandrium, cerci, surstyli and phallus, posterior view. B. Epandrium, cerci, surstyli, phallus and pre-gonite, lateral view. Abbreviations: c = cercus; d = distal lobe of phallus; s = surstylus; p = pregonite. Scale bars: 100 µm.
Fig. 5 in Taxonomic revision of Australian Amobia Robineau-Desvoidy, 1830 (Sarcophagidae: Miltogramminae): integrating morphology and genetics finds a new species and tackles old problems
Fig. 5. Amobia burnsi (Malloch, 1930), male terminalia, NT, 15 km N Katherine, 16 May 2005, R.W. Matthews leg (ANIC). A. Epandrium, cerci, surstyli and phallus, posterior view. B. Epandrium, cerci, surstyli, phallus and pre-gonite, lateral view. C. SEM image of epandrium, gonites, cerci and surstyli, posterior view. D. SEM image of epandrium, gonites, phallus, cerci and surstyli, lateral view. Abbreviations: c = cercus; d = distal lobe of phallus; s = surstylus; p = pre-gonite. Scale bars: 100 µm.
FIGURES 1 – 3 in Retrocitomyia Lopes, 1982 (Diptera: Sarcophagidae): new species, new records, key to males, and an updated catalog
FIGURES 1 – 3. Retrocitomyia sisbiota sp. nov. 1. Male habitus (paratype, MNRJ), lateral view. 2. Male terminalia (paratype, MNRJ), lateral view. 3. Female terminalia (paratype, MZSP), ventral view. Scale bars = 1 mm.
FIGURES 10 – 13. Male terminalia, lateral view. 10 in Retrocitomyia Lopes, 1982 (Diptera: Sarcophagidae): new species, new records, key to males, and an updated catalog
FIGURES 10 – 13. Male terminalia, lateral view. 10. Retrocitomyia fluminensis Lopes (specimen from MS, Bodoquena). 11. Retrocitomyia mizuguchiana Tibana & Xerez (specimen from MS, Corumbá). 12. Retrocitomyia paraguayensis Lopes (specimen from MT, Chapada dos Guimarães). 13. Retrocitomyia retrocita (Hall) (specimen from MT, Chapada dos Guimarães).
FIGURES 4 – 9 in Retrocitomyia Lopes, 1982 (Diptera: Sarcophagidae): new species, new records, key to males, and an updated catalog
FIGURES 4 – 9. Retrocitomyia sisbiota sp. nov. 4. Male sternite 5 (paratype, MNRJ), ventral view. 5. Terminal segments of male abdomen (paratype, MNRJ), lateral view. 6. Male cerci (paratype, MNRJ), posterior view. 7. Phallus (paratype, MNRJ), lateral view. 8. Phallus (paratype, MNRJ), ventral view. 9. Female terminalia (paratype, MNRJ), ventral view. Abbreviations: bp = basiphallus, ce = cercus, ep = epandrium, hy = hypoproct, jx = juxta, ls = lateral stylus, ms = median stylus, pp = paraphallus, ST = sternite, su = surstylus, T = tergite, ve = vesica, vp = vaginal plate. Scale bars = 0.2 mm.
Figure 12 in A review of subtribe Phrosinellina Verves, 1989, with description of Phrosinella (Asiometopia) kocaki sp. nov. from the Middle East (Diptera: Sarcophagidae: Miltogramminae: Metopiaini)
Figure 12. Gymnopsidia inflaticornis (Allen). ♀: head laterally (after Shewell, 1987). Figure 13. Gymnoprosopa polita Townsend. ♀: head laterally (after Shewell, 1987). Figures 14–15. Phrosinella (s. str.) nasuta (Meigen), 14, ♂, Ukraine, Kyiv region, Rokytne District, Busheve village, N 49039′, E 30035′, open cast, 27.07.2012, head laterally (original photo); 15, ♂, total view dorsally (after Venturi, 1947). Figure 16. Phrosinella (Euhilarella) sannio (Zetterstedt, 1838). ♂: fore left tarsus laterally (after Verves, 1990). Figures 17–19. Phrosinella (Caspiomyia) persa (Rohdendorf, 1935) (orig.), ♂: 17- head dorsolaterally; 18- right wing dorsally; 19- abdomen dorsally.
Figures 1–6 in A review of subtribe Phrosinellina Verves, 1989, with description of Phrosinella (Asiometopia) kocaki sp. nov. from the Middle East (Diptera: Sarcophagidae: Miltogramminae: Metopiaini)
Figures 1–6. Phrosinella (Asiometopia) kocaki Verves & Khrokalo, sp. nov. Holotype ♂: 1- head anteriorly; 2- head laterally; 3- head dorsally; 4- fore left tarsus dorsally; 5- abdomen dorsally; 6- total view dorsally. Figures 7–11. Phrosinella (Asiometopia) kozlovi (Rohd.). ♂, Turkey: Iğdır, Ararat [recent: Mountain of Ağrı] below Serdarbulak, 5000′, 4.ix.1960: 7- head anteriorly; 8- head laterally; 9- fore tarsus dorsally; 10- abdomen dorsally; ♂, Mongolia: Kobdo aimak, Bulgan river, 25 km NNW of Bulgan habitation, 2.vii.1980: 11- abdomen dorsally.
Figs 15–16 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 15–16. Xeromyia merei (Séguy. 15 (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label. 16 (female): a — habitus in lateral view; b —head in profile; c — head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label.
Fig. 6 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Fig. 6. Apodacra idiopatica sp. n. (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label. Fig. 7. Apodacra melanura sp. n. (female): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label. Figs 8–9. Apodacra pulchra Egger. 8 (male): a —habitus in lateral view; b —head in profile; c —head in frontal view; d —head in dorsal view; e — fore leg in posterior view; f — wing and abdomen in lateral view; g — abdomen in dorsal view; h — Label. 9 (female): a —habitus in lateral view; b — abdomen in dorsal view; c — head in profile; d —head in frontal view; e —head in dorsal view; f — wing; g — label.
Figs 3–4 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 3–4. Apodacra dispar Vill.: 3 (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — hind leg in anterior view; f — wing; g — abdomen in dorsal view; h — label. 4 (female): a — habitus in lateral view; b — abdomen in dorsal view; c— head in profile; d — head in frontal view; e — head in dorsal view; f — wing; g — label. Fig. 5. Apodacra firanense sp. n. (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — hind legs in anterior view; f — wing & abdomen in dorsal view; g — label.
Fig. 12 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Fig. 12. Xeromyia africana (Rohd.) (female): a —habitus in lateral view; b — abdomen in dorsal view; c —head in profile; d —head in frontal view; e —head in dorsal view; f — wing; g — label.
Figs 22–23 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 22–23. Xerophilomyia plumipes (Vill.). Fig. 22 (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — middle leg in antrerior view; f — wing; g — abdomen in dorsal view;h — label. 23 (female): a —habitus in lateral view; b — wing & abdomen in dorsolateral view; c — head in profile; d — head in frontal view; e — head in dorsal view; f — wings & abdomen, dorsal view; g — label.
Figs 10–11 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 10–11. Apodacra seriemaculata Mcq.: 10 (male): a —habitus in lateral view; b —head in profile; c —head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label. 11 (female): a — habitus in lateral view; b — abdomen in dorsal view; c —head in profile; d —head in frontal view; e —head in dorsal view; f — wing; g — label.
Fig. 19 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Fig. 19. Xerophilomyia nigritarsus sp. n.: a —habitus in lateral view; b —head in profile; c —head in frontal view; d —head in dorsal view; e — wing & abdomen in dorsolateral view; f — abdomen in dorsal view; g — label. Figs 20–21. Xerophilomyia nigropicta Rohd. 20 (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — widdle leg in antrerior view; f — wing; g — abdomen in dorsal view; h — label. 21 (female): a —habitus in lateral view; b — abdomen in dorsal view; c — head in profile; d — head in frontal view; e — head in dorsal view; f — wing abdomen, lateral view; g — label.
Figs 17–18 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 17–18. Xeromyia stenorhina (Rohd.). 17 (male): a — habitus in lateral view; b — head in profile; c — head in frontal view; d — head in dorsal view; e — wing; f — abdomen in dorsal view; g — label. 18 (female): a — habitus in lateral view; b — abdomen in dorsal view; c — head in profile; d — head in frontal view; e — head in dorsal view; f — wing; g — label.
Figs 1–2 in Review Of Subtribe Apodacrina (Diptera, Sarcophagidae) Of Middle East With Descriptions Of Ten New Species
Figs 1–2. Apodacra chrysocephala Rohd.: 1 (male): a — habitus in lateral view; b — habitus in dorsal view; c — head in profile; d — head in frontal view; e — fore leg in anterior view; f — wing; g — label. 2(female): a — habitus in lateral view; b — abdomen in dorsal view; c — head in profile; d — head in frontal view; e — head in dorsal view; f — wing; g — label.
Fig. 13 in Eight new species of Dexosarcophaga Townsend, 1917 (Diptera, Sarcophagidae) from the Neotropical Region
Fig. 13. Dexosarcophaga pallida sp. nov., ♂, paratype (NHRS [lost]), Colombia, Caquetá, Chiribiquete National Park. A. Habitus, lateral view. B. Terminalia, lateral view.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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DANDI Archive for NWB datasets
DANDI is a BRAIN Initiative archive for publishing and sharing neurophysiology data, including electrophysiology, optophysiology, and behavioral data packaged as NWB and related standards.
International Brain Laboratory public data
The International Brain Laboratory public data releases expose standardized mouse decision-making experiments, including Neuropixels recordings, widefield calcium imaging, behavior, and session metadata accessed through the ONE API.
OpenNeuro
OpenNeuro is a free, open platform for sharing neuroimaging datasets, with public search, dataset pages, and download paths for web, S3, DataLad, and the OpenNeuro CLI.