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Figs. 60–63. Nixonia sicaria, n in Revision of World Species of the Genus Nixonia Masner (Hymenoptera: Platygastroidea, Scelionidae)
Figs. 60–63. Nixonia sicaria, n.sp., holotype female (OSUC 151679). 60. lateral habitus (image reversed). 61. Head, frontal view. 62. Head and mesosoma, dorsal view. 63. Apex of metasoma, dorsal view. Scale in millimeters.
FIGURE 60. Chersonesometrus Couzijn, 1978 in Systematic Revision Of The Asian Forest Scorpions (Heterometrinae Simon, 1879), Revised Suprageneric Classification Of Scorpionidae Latreille, 1802, And Revalidation Of Rugodentidae Bastawade Et Al., 2005
FIGURE 60. Chersonesometrus Couzijn, 1978, stat. nov. et stat. rev., metasoma and telson, ventral aspect. A. Chersonesometrus bastawadei, sp. nov., holotype ♀ (AMNH), Naganath Temple, India. B. Chersonesometrus beccaloniae (Kovařík, 2004), comb. nov., ♀ (AMNH), Yelagiri Hills, India. C. Chersonesometrus hendersoni, sp. nov., paratype ♀ (AMNH), Tungabhadra River, India. D. Chersonesometrus pelekomanus (Couzijn, 1981), comb. nov., paratype ♀ (SMF RII/329). E. Chersonesometrus tristis (Henderson, 1919), comb. nov., ♀ (AMNH), Maddur, India. Scale bars = 5 mm.
FIG. 60 in Systematics And Analysis Of The Radiation Of Orthotylini Plant Bugs Associated With Callitroid Conifers In Australia: Description Of Five New Genera And 32 New Species (Heteroptera: Miridae: Orthotylinae)
FIG. 60. Scanning electron micrograph images of female genitalic structures of Erysivena kalbarri. A. Asymmetrical sclerotized vestibulum, ventral. B. Genital chamber, posterior. C. Sclerotized, densely spinose ventral labiate plate with lateral lobes, dorsal. D. Posterior wall, dorsal. Scale bars = 30 µm.
FIGURE 60 in Taxonomic Revision Of The Jumping Goblin Spiders Of The Genus Orchestina Simon, 1882, In The Americas (Araneae: Oonopidae)
FIGURE 60. Orchestina spp., female genitalia, ventral view. A. O . filandia. B. O . arboleda. C. O . cali. D. O . saltabunda. E. O . ranchogrande. F. O . kairi. G. O . galapagos. H. O . fernandina, I. O . neblina. J. O . venezuela. Scale bars: 0.2 mm. (PBI_OON 42240, 42225, 42748, 1665, 27360, 36903, 36908, 30708, 51119, 1683).
Fig. 60 in The Early Evolution Of Archosaurs: Relationships And The Origin Of Major Clades
Fig. 60. Calcanea of Anisian suchians. A, Right calcaneum of a suchian (IVPP unnumbered; Young, 1964: fig. 60A) from the Upper Ehrmaying (5 Ermaying) Formation of China in proximal (left), lateral (middle), and ventral (right) views. B, Right calcaneum of a suchian (MSM 4673) from the Moenkopi Formation of western North America in proximal (left), lateral (middle), and ventral (right) views. C, Left calcaneum of an additional suchian (MSM 4672) from the Moenkopi Formation of western North America in proximal (left), lateral (middle), and ventral (right) views. D, Partial left calcaneum of a suchian (NMT RB39) from the Manda Beds of southeastern Africa in proximal (left), anterior (middle), and ventral (right) views. Anatomical abbreviations in the appendix. Scale bars 5 1 cm.
Fig. 60. Neotrops spp. genitalia, cleared. A–B. Neotrops yabare, new species. C, N. izquierdoi, new species. D, N. piacentinii, new species. A in The New World Goblin Spiders Of The New Genus Neotrops (Araneae: Oonopidae), Part 1
Fig. 60. Neotrops spp. genitalia, cleared. A–B. Neotrops yabare, new species. C, N. izquierdoi, new species. D, N. piacentinii, new species. A. Internal female genitalia, ventral view (PBI_OON 43216). B. Male palp, retrolateral view (PBI_OON 43201). C. Internal female genitalia, dorsal view (PBI_OON 42026). D. Male palp, retrolateral view (PBI_OON 43362).
Fig. 60 in The Goblin Spider Genus Zyngoonops (Araneae, Oonopidae), With Notes On Related Taxa
Fig. 60. Zyngoonops swammerdami, new species, female. A. Habitus, lateral view. B. Epigastric region, ventral view. Scale bars: 50 Mm (B), 100 Mm (A).
Fig. 60. Chactopsoides gonzalezspongai, n in Systematic Revision Of The Neotropical Scorpion Genus Chactopsis Kraepelin, 1912 (Chactoidea: Chactidae), With Descriptions Of Two New Genera And Four New Species
Fig. 60. Chactopsoides gonzalezspongai, n. sp., dextral pedipalp chela. A. Paratype ³ (AMNH). B–E. Paratype ♀ (AMNH). A, C. External aspect. B. Dorsal aspect. D. Ventral aspect. E. Internal aspect. Scale bars 5 1 mm.
Figs. 56–60. Oedichirus bicristatus. 56. Aedeagus, right lateral. 57. Aedeagus, ventral. 58. Aedeagus, left lateral. 59. Sternum VIII, male. 60. Sternum IX in Revision Of The New World Species Of Oedichirus (Coleoptera: Staphylinidae: Paederinae: Pinophilini: Procirrina)
Figs. 56–60. Oedichirus bicristatus. 56. Aedeagus, right lateral. 57. Aedeagus, ventral. 58. Aedeagus, left lateral. 59. Sternum VIII, male. 60. Sternum IX, male.
Figs. 46–60 in The Goblin Spider Genera Prodysderina, Aschnaoonops, And Bidysderina (Araneae, Oonopidae)
Figs. 46–60. Prodysderina megarmata, new species, female. 46. Epigastric region, ventral view. 47. Genitalia, dorsal view. 48. Claws of leg I, lateral view. 49. Same, leg II. 50. Same, leg III. 51. Same, leg IV. 52. Claws of leg I, distal view. 53. Same, leg II. 54. Same, leg III. 55. Same, leg IV. 56. Tarsal organ from leg I, dorsal view. 57. Same, leg II. 58. Same, leg III. 59. Same, leg IV. 60. Same, palp.
Fig. 60 in A Review Of Dromaeosaurid Systematics And Paravian Phylogeny
Fig. 60. Cladograms illustrating the eight alternate positions that Limenavis patagonicus can take in the most parsimonious set of trees. Topology highlighted in the box is the only one with unambiguous support of the position of Limenavis patagonicus.
Figure 60 in The Palaeozoic Ancestry of Salamanders, Frogs and Caecilians
Figure 60. Two specimens attributed to the primitive branchiosaurid Branchiosaurus sp. from the Westphalian D of Mazon Creek, Illinois. Reproduced from Milner (1982). A, skull of United States National Museum 4400 in palatal view. Note the similarity of the hyoid elements to those of the Middle Jurassic salamander Chunerpeton tianyiensis (Fig. 47). B, Yale Peabody Museum 802, showing palate and infillings of the digestive tract.
Figure 60 in A taxonomic revision of Paradoris sea slugs (Mollusca, Gastropoda, Nudibranchia, Doridina)
Figure 60. Paradoris sp. A. A, rhinophoral lamellae, CASIZ 165833, scale = 20 µm. B, rhinophoral lamellae, CASIZ 099299 #1, scale = 20 µm. C, branchial plume (detail), CASIZ 099299 #1, scale = 100 µm. D, branchial plume (detail), CASIZ 165833, scale = 100 µm.
Figure 60 in A revision of the New World eximius lineage of Anelosimus (Araneae, Theridiidae) and a phylogenetic analysis using worldwide exemplars
Figure 60. Character optimization on the preferred phylogeny, with clade numbers in circles at the nodes. Numbers above branches indicate characters changing on that node, filled circles indicate characters with perfect fit to the cladogram. All changes are shown; ambiguous character optimization was generally resolved in favour of parallel losses, over parallel gains of structures (see Methods).
Figure 60. A in Systematics and phylogeny of Philautus Gistel, 1848 (Anura, Rhacophoridae) in the Western Ghats of India, with descriptions of 12 new species
Figure 60. A, holotype of Philautus travancoricus (BMNH 1947.2.6.20), lateral view of head; B, Philautus luteolus (SDB 2567), lateral view of head. Scale bars: 5 mm.
Figures 51–60 in Revision of Tegyrius (Coleoptera: Chrysomelidae: Galerucinae: Alticini), with descriptions of eight new species
Figures 51–60. Tegyrius keralaensis comb. nov.: 51, head; 52, intercoxal ridges on first abdominal ventrite; 53, male last abdominal ventrite; 54, aedeagus, ventral view; 55, aedeagus, lateral view; 56, distal opening; 57, tegmen; 58, spermatheca; 59, vaginal palpi; 60, tignum.
Figures 55–60 in Systematics and phylogeny of the tribe Paragini (Diptera: Syrphidae) based on molecular and morphological characters
Figures 55–60. Hypandrium, lateral view (Figs 55–57); hypandrium, ventral view (Figs 58–60). Paragus (Pandasyopthalmus) jozanus (Figs 57, 60); Paragus (Pandasyopthalmus) brachycerus (Figs 55, 58); Paragus (Pandasyopthalmus) manensis (Figs 56, 59).
Figures 60–65 in Cladistic analysis of Malagasy pholcid spiders reveals generic level endemism: Revision of Zatavua n. gen. and Paramicromerys Millot (Pholcidae, Araneae)
Figures 60–65. Zatavua voahangyae. Left male palp in prolateral (60) and retrolateral (61) views, male chelicerae in lateral (62) frontal (63) views, and cleared epigynum in ventral (64) and dorsal (65) views. 'e': embolus; 'p': pocket; 's': spine on embolus; 'to': tarsal organ. Scale lines: 0.5 mm (60–61), 0.2 mm (62–63), 0.3 mm (64–65).
Figure 60 in Water mites of the genus Atractides Koch, 1837 (Acari: Parasitengona: Hygrobatidae) in the western Palaearctic region: a revision
Figure 60. Atractides digitatus ♂. A, Gerecke E 131a, B–D, holotype SMNH 4352. A, dorsum; B, coxal, genital and postgenital field; C, I-L-5 and -6; D, palp, medial view. Scale bars = 100 µm.
Figure 60. Torrenticola amala. A–D in Studies on Latin American water mites of the genus Torrenticola Piersig, 1896 (Torrenticolidae, Hydrachnidia, Acari)
Figure 60. Torrenticola amala. A–D, female (CR 203). A, idiosoma, ventral view; B, idiosoma, dorsal view; C, capitulum with right palp, lateral view; D, left palp, medial view. Scale bars = 100 µm.
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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.