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Fig. 2 in Prey-associated genetic differentiation in two species of silver fly (Diptera: Chamaemyiidae), Leucotaraxis argenticollis and L. piniperda
Fig. 2. Individual-based isolation by distance for eastern and western groups of both Leucotaraxis species. Pairwise genetic distance was calculated as linear genotypic distance and Euclidean geographic distance was calculated from collection site coordinates. Points are differentially shaded for distances between two individuals collected from the same adelgid prey host plant genus (e.g., Tsuga—Tsuga), or for two individuals collected from different adelgid prey host plant genera (e.g., Tsuga—Pinus).
Fig. 1 in Prey-associated genetic differentiation in two species of silver fly (Diptera: Chamaemyiidae), Leucotaraxis argenticollis and L. piniperda
Fig. 1. Maps showing sample sites indicating the host plant genus of the adelgid prey from which flies were collected for: A) L. argenticollis, and B) L. piniperda; and pie charts showing population genetic structure for: C) L. argenticollis, and D) L. piniperda. Structure results correspond to the plots shown in Figs. 3 and 4.
Fig. 5 in Prey-associated genetic differentiation in two species of silver fly (Diptera: Chamaemyiidae), Leucotaraxis argenticollis and L. piniperda
Fig. 5. Haplotype network of Leucotaraxis argenticollis DNA barcode sequences.The area of each pie chart is proportional to the number of samples sharing that haplotype. Small black dots represent unsampled haplotypes. Pie charts indicate the proportions of flies sampled from different host plant genera of adelgid prey.
FIGURES 13–17 in Alone in paradise: a new genus and species of Hirmoneurini tangle-veined flies (Diptera, Nemestrinidae) in South America
FIGURES 13–17. Male terminalia of Bernardia xenomorpha gen. et sp. nov. 13. Genital capsule (dorsal view, light microscopy). 14. Genital capsule (dorsal view, SEM). 15. Phallus morphology (posterior view). 16, 17. Phallus morphology (posterolateral view). (goncx = gonocoxite; goncx apod = gonocoxal apodeme; gonst = gonostylus; igp = inner gonocoxal processes; l-hook = lower aedeagal hook; ph = phallus; u-hook = upper aedeagal hook).
FIGURES 9–12 in Alone in paradise: a new genus and species of Hirmoneurini tangle-veined flies (Diptera, Nemestrinidae) in South America
FIGURES 9–12. Male terminalia of Bernardia xenomorpha gen. et sp. nov. 9. Posterior view. 10. Epandrium, dorsal view (light microscopy). 11. Epandrium, dorsal view (SEM). 12. Epandrium and cerci (posterior view, SEM). (cerc = cercus; epand = epandrium; goncx = gonocoxite; gonst = gonostylus; hypd = hypandrium; ph = phallus).
FIGURES 4, 5 in Alone in paradise: a new genus and species of Hirmoneurini tangle-veined flies (Diptera, Nemestrinidae) in South America
FIGURES 4, 5. Bernardia xenomorpha gen. et sp. nov. 4. Paratype habitus (male, dorsal view). 5. Right wing (dorsal view).
FIGURES 18–22 in Alone in paradise: a new genus and species of Hirmoneurini tangle-veined flies (Diptera, Nemestrinidae) in South America
FIGURES 18–22. Male terminalia of Bernardia xenomorpha gen. et sp. nov. 18. Genital capsule (ventral view, light microscopy). 19, 20. Phallus morphology (ventral view). 21, 22. Genital capsule (ventral view, SEM). (cerc = cercus; epand = epandrium; goncx = gonocoxite; gonst = gonostylus; hypd = hypandrium; igp = inner gonocoxal processes; l-hook = lower aedeagal hook; ph = phallus; u-hook = upper aedeagal hook).
FIGURES 28–36. Genital fork. 28. Neorhynchocephalus Lichtwardt. 29. Hirmoneuropsis Bequaert. 30. Hyrmophlaeba Rondani. 31, 32. Trichophthalma Westwood. 33 in Alone in paradise: a new genus and species of Hirmoneurini tangle-veined flies (Diptera, Nemestrinidae) in South America
FIGURES 28–36. Genital fork. 28. Neorhynchocephalus Lichtwardt. 29. Hirmoneuropsis Bequaert. 30. Hyrmophlaeba Rondani. 31, 32. Trichophthalma Westwood. 33. Trichophthalma (Eurygastromyia). 34–36. Bernardia gen. nov. (arrows: tips of arms of genital fork). (Figures 28–36, redrawn from Angulo 1987).
Phenotypic plasticity in desiccation physiology of closely related, range restricted and broadly distributed fruit fly species
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Data from: Impacts of an invasive ant species on roosting behaviour of an island endemic flying-fox
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Data from: Preference of an insular flying fox for seed figs enhances seed dispersal of a dioecious species
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Figures 18-30 from: Starkevich P, Men Q-L, Sivell D (2020) Redescriptions of the poorly known crane fly species Tipula (Vestiplex) scandens and Tipula (Vestiplex) subscripta from Tibet and Yunnan, China (Diptera, Tipulidae). ZooKeys 917: 127-140. https://doi.org/10.3897/zookeys.917.38044
Figures 18-30 Male hypopygium of T. (V.) subscripta. 18 Hypopygium, lateral view 19 hypopygium, dorsal view 20 hypopygium, ventral view 21 gonocoxite, lateral view 22 outer gonostylus, lateral view 23 inner gonostylus, outer lateral view 24 inner gonostylus, inner lateral view 25 adminiculum, ventral view 26 adminiculum, lateral view 27 gonocoxal fragment, dorsal view 28 compressor apodeme of semen pump 29 semen pump, lateral view 30 semen pump. Abbreviations: ls, lateral sclerite of gonocoxal fragment; ms, medial sclerite of gonocoxal fragment. Scale bars: 0.4 mm (18–20), 0.25 mm (21–30).
Figures 2-12 from: Starkevich P, Men Q-L, Sivell D (2020) Redescriptions of the poorly known crane fly species Tipula (Vestiplex) scandens and Tipula (Vestiplex) subscripta from Tibet and Yunnan, China (Diptera, Tipulidae). ZooKeys 917: 127-140. https://doi.org/10.3897/zookeys.917.38044
Figures 2-12 Male hypopygium of T. (V.) scandens. 2 Hypopygium, lateral view 3 hypopygium, dorsal view 4 hypopygium, ventral view 5 outer gonostylus, lateral view 6 outer gonostylus and inner gonostylus, lateral view 7 adminiculum, lateral view 8 adminiculum, ventral view 9 gonocoxal fragment, dorsal view 10 compressor apodeme of semen pump 11 semen pump, lateral view 12 semen pump. Abbreviations: ls, lateral sclerite of gonocoxal fragment; ms, medial sclerite of gonocoxal fragment. Scale bars: 0.4 mm (2–4), 0.25 mm (5–12).
Figures 32-34 from: Starkevich P, Men Q-L, Sivell D (2020) Redescriptions of the poorly known crane fly species Tipula (Vestiplex) scandens and Tipula (Vestiplex) subscripta from Tibet and Yunnan, China (Diptera, Tipulidae). ZooKeys 917: 127-140. https://doi.org/10.3897/zookeys.917.38044
Figures 32-34 Female ovipositor of T. (V.) subscripta. 32 Ovipositor, lateral view 33 sternite eight with hypovalvae, ventral view 34 sternite nine and furca, dorsal view. Scale bars: 0.6 mm (32), 0.5 mm (33), 0.25 mm (34).
Figures 14-16 from: Starkevich P, Men Q-L, Sivell D (2020) Redescriptions of the poorly known crane fly species Tipula (Vestiplex) scandens and Tipula (Vestiplex) subscripta from Tibet and Yunnan, China (Diptera, Tipulidae). ZooKeys 917: 127-140. https://doi.org/10.3897/zookeys.917.38044
Figures 14-16 Female ovipositor of T. (V.) scandens. 14 Tergite ten and cercus, lateral view 15 sternite eight with hypovalvae, ventral view 16 sternite nine, furca, and part of internal reproductive system, dorsal view. Abbreviation: bp sd, basal part of spermathecal duct. Scale bars: 0.5 mm (14, 15), 0.4 mm (16).
Miirinotomylte hirsuta Austen, d. Distal extromity of abdomen: lateral view, showing hypopygium. (:reatly riilargetl. in A Remarkable Semi-Apterous Fly (Diptera) found in a Cave in East Africa, and representing a new Family, Genus, and Species.
Miirinotomylte hirsuta Austen, d. Distal extromity of abdomen: lateral view, showing hypopygium. (:reatly riilargetl.
FIGURE 30 in A review of the flying fish genus Cypselurus (Beloniformes: Exocoetidae). Part 1. Revision of the subgenus Zonocypselurus Parin and Bogorodsky, 2011 with descriptions of one new subgenus, four new species and two new subspecies and reinstatement of one species as valid
FIGURE 30. Exocoetus hexazona. After Bleeker (1866–1872; Plate SCOMBRES V, fig.3).
FIGURE 23 in A review of the flying fish genus Cypselurus (Beloniformes: Exocoetidae). Part 1. Revision of the subgenus Zonocypselurus Parin and Bogorodsky, 2011 with descriptions of one new subgenus, four new species and two new subspecies and reinstatement of one species as valid
FIGURE 23. Holotype of flying fish Cypselurus bosha (147 mm SL, IORAS 03435, Bolinao fish market).
Fig. 4 in Notes on the frugivorous fruit fly (Diptera: Tephritidae) fauna of western Africa, with description of a new Dacus species
Fig. 4. Dacus goergeni sp. nov. A. Head, frontal view. B. Thorax, dorsal view. C. Thorax, lateral view. D. Abdomen, dorsal view. E. Wing.
Fig. 9. A–B. Melanostoma apicale Bigot, 1884 in Flower flies (Diptera, Syrphidae) of French Polynesia, with the description of two new species
Fig. 9. A–B. Melanostoma apicale Bigot, 1884, ♂ (from Ôhara & Kusigemati 1985, as M. univittatum (Wiedemann, 1824)). A. Head, lateral view. B. Abdomen, dorsal view. C. Melanostoma mellinum (Linnaeus, 1758), ♂, metasternum, ventral view (from Vockeroth & Thompson 1987; mtst = metasternum, cx3 = metacoxa). D–F. Melanostoma polynesiotes Mengual & Ramage sp. nov., holotype, ♂ (ZFMK-DIP-00019707), genitalia. D. Epandrium with surstylus and cercus, lateral view. E. Hypandrium, lateral view. F. Hypandrium, ventral view. G–H. M. apicale Bigot, 1884, ♂, genitalia, lateral view (from Ôhara & Kusigemati 1985, as M. univittatum (Wiedemann, 1824)). G. Epandrium with surstylus and cercus. H. Hypandrium. I. Melanostoma univittatum (Wiedemann, 1824), ♂ (ZFMK-DIP-00019737), surstylus and part of epandrium and cercus, lateral view. Scale bars = 0.5 mm.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
Annotated Behaviour and Observability Dataset (ABODe)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.