Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
127
datasets available to search
ShareScore release 0.9.0
Dataset results
127 results for “wing venation”
FIGURES 10–13 Fig. 10 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 10–13 Fig. 10. Inner hind tibial spur of female. Fig. 11. Hemitergite 7 of female. Fig. 12. Hemitergite 8 of female. Fig. 13. Sting shaft and second valvifer of female, the second valvifer is foreshortened from the perspective of this drawing.
FIGURES 4–6 L. idiotropoptera, Fig. 4 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 4–6 L. idiotropoptera, Fig. 4. Male mandible, outer and dorsal views. Fig. 5. Male foreleg from trochanter to basitarsus, outer view with inner view of tibia and basal view of femoral process. Fig. 6. Male midleg from trochanter to basitarsus, outer view.
FIGURES 1–3 L. idiotropoptera, Fig. 1 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 1–3 L. idiotropoptera, Fig. 1. Face of male, frontal view. Fig. 2. Face of female, frontal view. Fig. 3. Forewing of male.
FIGURES 7–9 L. idiotropoptera, Fig. 7. S7 in A new Leioproctus with unique wing venation in males (Hymenoptera: Colletidae: Paracolletinae) with comments on unusual wing modifications in bees
FIGURES 7–9 L. idiotropoptera, Fig. 7. S7 of male, dorsal view on left, ventral view on right. Fig. 8. S8 of male, dorsal view on left, ventral view on right. Fig. 9. Genital capsule of male, dorsal view on left, ventral view on right.
FIGURES 7–18. Wing venation. 7–14, Forewing. 7 in Revision of Holarctic Teleiodini (Lepidoptera: Gelechiidae)
FIGURES 7–18. Wing venation. 7–14, Forewing. 7, Sinoe robiniella. ps = pterostigma. 8, Carpatolechia sp.1. 9, Arogalea cristifasciella. 10, Agnippe sp.1. 11, Stenolechia gemmella. 12, Parastenolechia nigrinotella. 13, Parachronistis albiceps. 14, Arcutelphusa talladega, sp. nov., 15–18, Hindwing. 15, Agnippe sp.1. 16, Sinoe robiniella. 17, Arogalea cristifasciella. 18, Arcutelphusa talladega, sp. nov.
FIGURE 2. Wing venation. A. C in The genus Crypsithyris Meyrick (Lepidoptera: Tineidae) in Guangdong Province, China, with comments on the biology and the description of a new species
FIGURE 2. Wing venation. A. C. nanlingensis, sp. nov., holotype, male; B. Crypsithyris sp., female; C. Crypsithyris japonica Petersen & Gaedike, 1993, male.
FIGURE 1. Nesophrosyne wing venation illustrating the variable outer anteapical cell. A in Review of the native Hawaiian leafhopper genus Nesophrosyne (Hemiptera: Cicadellidae: Deltocephalinae) with description of eight new species associated with Broussaisia arguta (Hydrangeaceae)
FIGURE 1. Nesophrosyne wing venation illustrating the variable outer anteapical cell. A) Nesophrosyne (Nesophrosyne) perkinsi, and B) Nesophrosyne (Nesoreias) insularis. Adapted from Kirkaldy (1948).
FIGURES 3–5. Wing venation Gryllotalpinae. 3 in The phylogeny of mole crickets (Orthoptera: Gryllotalpoidea: Gryllotalpidae)
FIGURES 3–5. Wing venation Gryllotalpinae. 3. Neocurtilla scutata (female). 4. Gryllotalpella lawrencei n. sp. 5. Leptocurtilla chopardi n. sp.
FIGURES 1–2. Wing venation Scapteriscini. 1 in The phylogeny of mole crickets (Orthoptera: Gryllotalpoidea: Gryllotalpidae)
FIGURES 1–2. Wing venation Scapteriscini. 1. Neoscapteriscus tetradactylus (male). 2. Neoscapteriscus didactyloides (female).
FIGURES 17–28. 17. Stigmaporus lystracantha, wing venation. 18, 19 in Revision of the Palaearctic genus Gonaporus Ashmead, 1902 of spider wasps (Hymenoptera: Pompilidae)
FIGURES 17–28. 17. Stigmaporus lystracantha, wing venation. 18, 19. Gonaporus spinosissimus sp. nov., metafemur (dorsal view of apical part). 20. Micraporus priesneri, wing venation. 21–23. Protarsus, dorsal view. 21. G. alfierii. 22. G. ecbatanus. 23. G. israelicus. 24–28. Protarsus, ventral view. 24. G. alfierii. 25. G. ecbatanus. 26. G. israelicus. 27. G. simulator sp. nov. 28. G. spinosissimus sp. nov. 17, 18, 20, 24–28, ♀; 19, 21–23, ♂. Scale bar 1 mm for 17 and 0.5 mm for 18–28.
FIGURE 3 in First record of Aleiodes (Hemigyroneuron) (Hymenoptera: Braconidae: Rogadinae) from the Arabian Peninsula: description of new species with remarkable wing venation convergence to Gyroneuron and Gyroneuronella
FIGURE 3. Aleiodes (Hemigyroneuron) arabiensis sp. nov. A, face; B, head dorsal view; C, mesosoma lateral view and head, posterolateral view; D, propodeum, tergite 1 and basal part of tergite 2.
FIGURE 1 in First record of Aleiodes (Hemigyroneuron) (Hymenoptera: Braconidae: Rogadinae) from the Arabian Peninsula: description of new species with remarkable wing venation convergence to Gyroneuron and Gyroneuronella
FIGURE 1. Fore wing venation of: A, Gyroneuron sp.; B, Gyroneuronella sp. (Rogadini), showing terminology used for important veins.
FIGURE 2 in First record of Aleiodes (Hemigyroneuron) (Hymenoptera: Braconidae: Rogadinae) from the Arabian Peninsula: description of new species with remarkable wing venation convergence to Gyroneuron and Gyroneuronella
FIGURE 2. Aleiodes (Hemigyroneuron) arabiensis sp. nov. A, habitus; B, mesosoma and metasoma, dorsal view.
FIGURE 23 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 23. 'Fibla' exusta (Cockerell et Custer, 1925). Holotype UCM 4923. A, specimen as preserved. B, hind wing venation. Scale bar = 4 mm.
FIGURE 13 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 13. Archiraphidia tranquilla (Scudder, 1890). Wing venation of the holotype MCZ 246. A, right forewing. B, right hind wing. C, left forewing. D, left hind wing. Scale bar = 4 mm (all to scale).
FIGURE 21 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 21. Florissantoraphidia funerata (Engel, 2003). Holotype NHM In. 26922. A, the specimen as preserved (wetted with ethanol). B, the same (dry). Scale bar = 4 mm (both to scale).
FIGURE 18 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 18. Archiraphidia? somnolenta (Scudder, 1890). Wing venation of the holotype MCZ 488. A, left forewing. B, right forewing as preserved. C, right forewing, reconstruction. D, left hind wing. E, right hind wing. Scale bar = 4 mm (all to scale).
FIGURE 16 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 16. Archiraphidia tranquilla (Scudder, 1890) (paralectotype of A. eventa (Scudder, 1890), MCZ 253). A, the specimen as preserved (covered by Canada balsam). B, right forewing, C, right hind wing. D, left forewing. E, left hind wing. Scale bar = 4 mm (all to scale).
FIGURE 8 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 8. Megaraphidia sp. Specimen MCZ 3641. A, part (converted to right). B, counterpart. C, hind wing venation. Scale bar = 4 mm (all to scale).
FIGURE 7 in A revision of the late Eocene snakeflies (Raphidioptera) of the Florissant Formation, Colorado, with special reference to the wing venation of the Raphidiomorpha
FIGURE 7. Megaraphidia exhumata (Cockerell, 1909). Holotype MCZ 3640. A, part (converted to right). B, counterpart. C, forewing venation. Scale bar = 4 mm (all to scale).
ScienceDex guides
Understand access before you commit
These curated guides explain access requirements, typical timelines, costs, and reuse considerations for widely used research datasets.
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.