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3,976 results for “key to genera”
FIGURE 1 in A new genus and species of Bruchinae, with a key to the genera from Australia (Coleoptera: Chrysomelidae)
FIGURE 1. Type locality of Buburra jeanae Reid & Beatson, Dixons Falls lookout, Mount Buffalo National Park, 15 November 2010. Phebalium squamulosum ssp. alpinum at right foreground. Photograph by J. Reid.
FIGURES 37–46. Male Collessiama damani. 37. Dorsal. 38. Wing. 39. Genitalic complex lateral. 40. Genitalic complex dorsal, epandrium removed. 41 in Collessiama (Diptera: Therevidae: Agapophytinae: Taenogera genus-group), a new genus from eastern Australia, with a key to the Australian genera of Therevidae
FIGURES 37–46. Male Collessiama damani. 37. Dorsal. 38. Wing. 39. Genitalic complex lateral. 40. Genitalic complex dorsal, epandrium removed. 41. Genitalic complex ventral, epandrium and aedeagus removed. 42. Genitalic complex lateral, epandrium and aedeagus removed. 43. Epandrium dorsal. 44. Aedeagus dorsal. 45. Aedeagus lateral. 46. Aedeagus ventral.
FIGURES 47–49. Distributions. 47 in Collessiama (Diptera: Therevidae: Agapophytinae: Taenogera genus-group), a new genus from eastern Australia, with a key to the Australian genera of Therevidae
FIGURES 47–49. Distributions. 47. Area of distribution inset. 48. Collessiama narelleae. 49. Collessiama damani.
FIGURES 16–28. Male Collessiama narelleae. 16. Dorsal. 17. Lateral. 18. Genitalic complex dorsal, epandrium removed. 19–20 in Collessiama (Diptera: Therevidae: Agapophytinae: Taenogera genus-group), a new genus from eastern Australia, with a key to the Australian genera of Therevidae
FIGURES 16–28. Male Collessiama narelleae. 16. Dorsal. 17. Lateral. 18. Genitalic complex dorsal, epandrium removed. 19–20. Genitalic complex lateral: DP distiphallus; E epandrium; GAP gonocoxal apodeme plate; G gonocoxa; GS gonostylus; GSDP gonostylar dorsal process; H hypandrium; IGP inner gonocoxal process; OGP outer gonocoxal process; VF ventral flange. 21–22. Genitalic complex ventral, epandrium and aedeagus removed: VL ventral lobe, VR ventral ridge. 23. Genitalic complex lateral, epandrium removed. 24. Epandrium dorsal. 25. Aedeagus dorsal. 26–27. Aedeagus lateral: BEA base of ejaculatory apodeme; DA dorsal apodeme of parameral sheath; EJA ejaculatory apodeme; LEP lateral ejaculatory process; VA ventral apodeme of parameral sheath. 28. Aedeagus ventral.
FIGURE 9 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 9. Opisthosoma (dorsal view). A, Spintharus flavidus Ƥ; B, Stemmops orsus Ƥ; C, S. ornata Ƥ; D, Thwaitesia bracteata Ƥ.
FIGURE 7. Male pedipalp. A in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 7. Male pedipalp. A, Steatoda grossa (left palp, ventral view, arrow = cymbial hood); B, Episinus cognatus (left palp, ventral view); C, Spintharus flavidus (left palp, ventral view, arrow = cymbial hood); D, Thwaitesia affinis (left palp, dorsal view, arrow = alveolar cavity of cymbium); E, Euryopis californica (left palp, dorsal view); F, Chrosiothes portalensis (left palp, ventral view, arrow = apex of flagellum); G, C. silvaticus (left palp, ventral view, arrow = apex of flagellum).
FIGURE 5 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 5. Tree from the implied weights analysis (k = 6). This topology corresponds to one of the two trees from the unweighted analysis under collapsing rule 1. Bremer support values (above) and ≥50% bootstrap values (below).
FIGURE 4 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 4. Tree from the implied weights analysis (k = 2, 3, 9). This topology corresponds to one of the two trees from the unweighted analysis under collapsing rule 1. Bremer support values (above) and ≥50% bootstrap values (below).
FIGURE 8 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 8. Opisthosoma (dorsal view). A, Chrosiothes chirica Ƥ; B, C. silvaticus Ƥ; C, C. portalensis Ƥ; D, Episinus bruneoviridis Ƥ; E, E. erythrophthalmus 3; F, E. cognatus Ƥ.
FIGURE 3 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 3. Tree from the successive weighting analysis with RC as character weighting function. The same topology was obtained as a strict consensus of six equally most parsimonious trees under branch collapsing rule 3, or as a single tree under branch collapsing rule 1, through PAUP. Bremer support values (above) and ≥50% bootstrap values (below) are from the unweighted analysis.
FIGURE 2. Strict consensus tree from the unweighted analysis. The same topology was obtained from 12 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 2. Strict consensus tree from the unweighted analysis. The same topology was obtained from 12 (PAUP, branch collapsing rule 3) and two (TNT, branch collapsing rule 1) equally most parsimonious trees (spintharine synapomorphies with character numbers above and character states below).
FIGURE 10 in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 10. Opisthosoma (dorsal view). A, Thwaitesia affinis Ƥ; B, Euryopis californica Ƥ; C, Steatoda grossa 3; D, Latrodectus mactans 3.
FIGURE 6. Carapace. A in Phylogenetic relationships of the comb-footed spider subfamily Spintharinae (Araneae, Araneoidea, Theridiidae), with generic diagnoses and a key to the genera
FIGURE 6. Carapace. A, Latrodectus geometricus Ƥ (dorsal view); B, L. geometricus Ƥ (lateral view); C, Stemmops orsus Ƥ (dorsal view); D, S. orsus Ƥ (lateral view).
FIGURE 1 in A cladistic analysis and classification of the subfamily Bembicinae (Hymenoptera: Crabronidae), with a key to the genera
FIGURE 1. (Completed). Strict consensus tree (344 steps, consistency index = 27, retention index = 77) of 18800 equally parsimonious trees (each with 302 steps, consistency index = 31, retention index = 81). Character-state changes optimized as unambiguous (filled circles = unreversed apomorphies; empty circles = homoplasious apomorphies).
FIGURE 1 in A cladistic analysis and classification of the subfamily Bembicinae (Hymenoptera: Crabronidae), with a key to the genera
FIGURE 1. (Continued). Strict consensus tree (344 steps, consistency index = 27, retention index = 77) of 18800 equally parsimonious trees (each with 302 steps, consistency index = 31, retention index = 81). Character-state changes optimized as unambiguous (filled circles = unreversed apomorphies; empty circles = homoplasious apomorphies).
FIGURE 1 in A cladistic analysis and classification of the subfamily Bembicinae (Hymenoptera: Crabronidae), with a key to the genera
FIGURE 1. Strict consensus tree (344 steps, consistency index = 27, retention index = 77) of 18800 equally parsimonious trees (each with 302 steps, consistency index = 31, retention index = 81). Character-state changes optimized as unambiguous (filled circles = unreversed apomorphies; empty circles = homoplasious apomorphies).
FIGURES 51–53. 51, Caribeacarus panamensis. 52, Amazonacarus paraensis n in A new genus and two new species of Opilioacaridae (Acari: Parasitiformes) from Amazonia, Brazil with a key to world genera
FIGURES 51–53. 51, Caribeacarus panamensis. 52, Amazonacarus paraensis n. sp. 53, Amazonacarus setosus n. sp. Showing the group of setae s-type which are very large in A. setosus, but not in other species.
FIGURES 42–43. Amazonacarus setosus n in A new genus and two new species of Opilioacaridae (Acari: Parasitiformes) from Amazonia, Brazil with a key to world genera
FIGURES 42–43. Amazonacarus setosus n. sp. Ventral view of sternitogenital region: 42, tritonymph; 43, deutonymph.
FIGURES 33–34. Amazonacarus paraensis n in A new genus and two new species of Opilioacaridae (Acari: Parasitiformes) from Amazonia, Brazil with a key to world genera
FIGURES 33–34. Amazonacarus paraensis n. sp. 33, Ventral view of evaginated ovipositor (arrow points ovipositor tip). 34, ventral view of female sternitogenital area and invaginated ovipositor (arrow points ovipositor tip).
FIGURES 31–32. Amazonacarus paraensis n in A new genus and two new species of Opilioacaridae (Acari: Parasitiformes) from Amazonia, Brazil with a key to world genera
FIGURES 31–32. Amazonacarus paraensis n. sp. Ventral view of sternitogenital region: 31, female (arrow points to genital setae); 32, male.
ScienceDex guides
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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.