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Fig. 6 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 6. Geographical and bathymetrical distribution of Reticunassa visayaensis sp. nov. Star indicates type locality. Each bar represents all lv or dd specimens.
Fig. 8 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 8. Shells of Reticunassa Iredale, 1936. – A–D. Reticunassa annabolteae sp. nov. A–C. Holotype, MNHN IM-2009-12843, length 11.5 mm, width 5.3 mm, S Madagascar, Ambatobe, Bavarama, 25°27.9′ S, 44°57.6′ E, 0–1 m. D. Protoconch. – E–H. R. goliath sp. nov. E–G. Holotype, MNHN IM-2000- 22724, length 15.5 mm, width 7.9 mm, New Caledonia, Nouméa, leg. D. Massemin, ex coll. H. Kool. H. Protoconch of paratype, MNHN IM-2000-28394. – I–L. R. intrudens sp. nov. Holotype, MNHN IM-2000-22726, length 7.9 mm, width 4.3 mm, New Caledonia, Touho, 20°44′ S, 165°14′ E, 49–59 m. L. Protoconch. – M–P. R. thailandensis sp. nov. M–O. Holotype, ZMA Moll.4.09.047, length 7.35 mm, width 3.8 mm, Thailand, Gulf of Thailand, 6°40.313′ N, 101°43.852′ E, 3–15 m. P. Protoconch. Scale bars: D, H, L, P = 200 µm.
Fig. 5 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 5. Geographical and bathymetrical distribution of Reticunassa tringa (Souverbie, 1864). Star indicates type locality. Each bar represents all lv or dd specimens.
Fig. 1. A in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 1. A. Bayesian tree based on COI sequences of species of Reticunassa. B. Bayesian tree based on 28S sequences of species of Reticunassa. C. Frequency of pairwise distance (K2P model) values among COI sequences. In gray, intra-specific variation. In black, inter-specific variation. PNG = Papua New Guinea.
Fig. 4 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 4. Geographical and bathymetrical distribution of Reticunassa paupera (Gould, 1850). Star indicates type locality. Each bar represents all lv or dd specimens.
Fig. 2 in Review of the Nassarius pauperus (Gould, 1850) complex (Nassariidae): Part 3, reinstatement of the genus Reticunassa, with the description of six new species
Fig. 2. Characters of Reticunassa Iredale, 1936. A–B. Protoconchs. A. R. paupera (Gould, 1850), MNHN IM-2007-31782. B. R. silvardi (Kool & Dekker, 2006). C. Suture detail of R. paupera. D. Axial striae in R. silvardi. E–F. Intercordal spirals. E. R. tringa (Souverbie, 1864). F. R. paupera. G–H. Columellar details of R. paupera. I–L. Type series of R. paupera. I–J. Lectotype, USNM 5726, length 9.1 mm, width 4.8 mm. K–L. Paralectotype, MCZ 216602, length 7.2 mm, width 3.5 mm. All scale bars = 200 µm.
Fig. 10 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 10. Schenkelia aurantia sp. nov. A. Palp, ventral view. B. Palp, retrolateral view. C. Epigyne, ventral view. D. Vulva, ventral view. Abbreviations: see Material and methods. Scale bars: A–B = 0.2 mm; C–D = 0.1 mm.
Fig. 9 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 9. Schenkelia aurantia sp. nov., Ƌ. A. Habitus, dorsal view. B. Habitus, ventral view. C. Palp, prolateral view. D. Palp, ventral view. E. Palp, retrolateral view. Scale bars: A–B = 1 mm; C–E = 0.2 mm.
Fig. 7. Mogrus frontosus Simon, 1871 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 7. Mogrus frontosus Simon, 1871, Ƌ. A. Habitus, dorsal view. B. Ventral view. C. Palp, prolateral view. D. Palp, ventral view. E. Palp, retrolateral view. Scale bars: A–B = 1 mm; C–E = 0.2 mm.
Fig. 5. A–B. Mogrus frontosus Simon, 1871 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 5. A–B. Mogrus frontosus Simon, 1871, Ƌ. C–D. Brancus calebi sp. nov., Ƌ. A, C. Palp, ventral view. B, D. Palp, retrolateral view. Abbreviations: see Material and methods. Scale bars: 0.2 mm.
Fig. 3 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 3. Bavirecta flavopuncta sp. nov., ♀. A. Habitus, dorsal view. B. Habitus, ventral view. C. Epigyne, ventral view. D. Vulva, ventral view. Scale bars: A–B = 2 mm; C–D = 0.2 mm.
Fig. 1 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 1. Bavirecta flavopuncta sp. nov., Ƌ. A. Habitus, dorsal view. B. Habitus, ventral view. C. Palp, prolateral view. D. Palp, ventral view. E. Palp, retrolateral view. The arrowheads point to the dorsal trapezoid (A) and black blotches (D). Scale bars: A–B = 2 mm; C–E = 0.2 mm.
Fig. 17 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 17. SEMs of pupa of Bedellia somnulentella Zeller, 1847 (OPU-IN-LE2018IV0038–0039). A. Head, ventral view. B. Lateral view. C. Dorsal view. D. Frontal process, ventral view. E. Same, lateral view. F. Face, ventral view. G. Seta and spiracle of abdomen, lateral view. H. Spiracle. I. A7, dorsal view. J. A7–A10, dorsal view. K. Same, lateral view. L. Dorsal view. M. Setae of A10, ventral view. N. Same, lateral view. O. Dorsal view.
Fig. 13 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 13. Maximum Likelihood tree of 23 yponomeutoid/gracillarioid species based on the DNA barcoding region. Numbers on nodes indicate bootstrap support values. Tonza citrorrhoa Meyrick, 1905 is indicated in bold.
Fig. 14 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 14. Adult head of Yponomeutoidea moths. A–C. Plutella xylostella Linnaeus, 1758 (OPU-IN-LE2018IV0037), Plutellidae, from Japan. D–F. Atteva sp. [OPU-IN-LE2018IV0036], Attevidae, from Thailand. A–B, E. Head, lateral view. C. Ocellus. D, F. Chaetosema. Abbreviations: ch = chaetosema; lp = labial palpus; mp = maxillary palpus; oc = ocellus; pr = proboscis. Scale bar: 0.5 mm.
Fig. 12 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 12. SEMs of pupal abdominal segments A9–A10 of Tonza citrorrhoa Meyrick, 1905 (OPU-IN- LE2018IV0018 -0020). A. Ventral view. B. Lateral view. C. Dorsal view. D. Middle portion of A10. E. Ventral setae of A9. F. Lateral seta of A10. G. Dorsal setae of A10. H. Apical setae of right process of cremaster, ventral view. I. Same, left process. J. Left process of cremaster, lateral view. K–L. Apical setae of right process of cremaster, dorsal view. Abbreviations: ds = dorsal seta; ls = lateral seta; sds = subdorsal seta; svs = subventral seta; vs = ventral seta.
Fig. 4 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 4. Brancus calebi sp. nov., Ƌ. A. Habitus, dorsal view. B. Habitus, ventral view. C. Palp, prolateral view. D. Palp, ventral view. E. Palp, retrolateral view. Scale bars: A–B = 1 mm; C–E = 0.2 mm.
Fig. 10 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 10. SEMs of the pupal head and abdomen of Tonza citrorrhoa Meyrick, 1905 (OPU-IN-LE2018IV0018–0020). A. Frontal process, ventral view. B. Head, lateral view. C. Frontal process, dorsal view. D. Same, lateral view. E. Face, ventral view. F. A5, ventral view. G. Setae of abdominal tergum 6. H. Same, A7. I. A5–A7, dorsal view.
Fig. 11 in A new genus and three new species of jumping spiders (Araneae: Salticidae) from Sri Lanka
Fig. 11. Schenkelia aurantia sp. nov., ♀. A. Habitus, dorsal view. B. Habitus, ventral view. C. Epigyne, ventral view. D. Vulva, ventral view. Scale bars: A–B = 1 mm; C–D = 0.1 mm.
Fig. 6 in Designation of a new family group name, Tonzidae fam. nov., for the genus Tonza (Lepidoptera, Yponomeutoidea), based on immature stages of Tonza citrorrhoa
Fig. 6. Mature larval thorax and abdominal segment of Tonza citrorrhoa Meyrick, 1905 (OPU-IN- LE2018IV0031|SK600, 0025|SK603, 0026|SK604). A. Thorax segment 1–3. B. Thoracic leg on thorax segment 1. C. A 1–4. D. A5–9. E. A9–10. F. Anal shield. Abbreviations: ans = anal shield; apl = anal proleg; Ba = claw, lateral view; Bb = same, frontal view; D1, D2 = dorsal setae; L1, L2, L3 = lateral setae; MD1 = microdorsal seta; MV3 = microventral seta; SD1, SD2 = subdorsal setae; sp = spiracle; SV1, SV2, SV3 = subventral setae; V1 = ventral seta; XD1, XD2 = XD group, dorsal setae on the anterior margin of the T1.
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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.