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1,347 results for “84”
Fig. 84 in Phylogeny of the family Characidae (Teleostei: Characiformes): from characters to taxonomy
Fig. 84. Branchial skeleton of Bryconamericus exodon, CI- FML 3897, 39.0 mm SL, dorsal view, anterior to left. BB1-3: first to third basibranchials, BHY: basihyal, VHH: ventral hypohyal. Scale bar = 1 mm.
Figures 71–84 in Revision of the Indo-African Pachycerus Schoenherr, 1823, with a description of four new species (Coleoptera: Curculionidae: Lixinae)
Figures 71–84. Pachycerus sahelicus sp. nov., holotypus: body (71, 72); rostrum (73, 74); pronotum (76); antenna (80); detail of elytral scales (75); ventrites (77); sternite VIII (84); hemisternite (81); spermatheca (79). Pachycerus sahelicus sp. nov., paratypus: aedeagus (78, 82, 83). Scale bars: 71, 72, 5 mm; 77, 2 mm; 73, 74, 76, 1 mm; 78, 80, 81, 83, 84, 0.5 mm; 79, 82, 0.2 mm.
Figures 71–84 in High species diversity in one of the dominant groups of spiders in East African montane forests (Araneae: Pholcidae: Buitinga n. gen., Spermophora Hentz)
Figures 71–84. Buitinga kadogo (71–79), mazumbai (80–83), and lakilingo (84). 71. Sclerotized teeth on proximal projections of male chelicerae. 72. Distal male cheliceral apophyses with modified hairs. 73. Male spinnerets. 74. Male gonopore with epiandrous spigots. 75. Right procursus, prolateral view. 76, 80. Scapes on epigyna. 77, 82. Male palpal tarsal organs. 78, 83. Female palpal tarsal organs. 79, 81. Female ALS. 84. Tip of female pedipalp with tarsal organ. Scale bars = 6 Mm (78), 8 Mm (83), 10 Mm (79), 20 Mm (71, 72, 77, 81, 82), 30 Mm (84), 40 Mm (74), 60 Mm (73, 76), 80 Mm (75), 200 Mm (80).
Figures 84–89 in A review of the genera of Macariini with a revised classification of the tribe (Geometridae: Ennominae)
Figures 84–89. Isturgia species: 84, 85, I. roraria, 84, ♂ genitalia, 85, detail; 86, 87, I. miniosaria, 86, ♂ genitalia, 87,
Figs 84-94 in New species and records of Staphylinidae from Greece, with two new synonymies (Insecta: Coleoptera)
Figs 84-94: Oxypoda afimbriata sp.n. (84-90) and O. praecisa sp.n. (91-94). (84, 91) habitus; (85, 92) forebody; (86, 93) head in lateral view; (87, 94) antenna; (88-89) median lobe of aedagus in lateral and in ventral view; (90) apical lobe of paramere. Scale bars: 84, 91: 1.0 mm; 85, 92: 0.5 mm; 86-87, 93-94: 0.2 mm; 88-90: 0.1 mm.
Figure 84. Thwaitesia. A–C in Morphological phylogeny of cobweb spiders and their relatives (Araneae, Araneoidea, Theridiidae)
Figure 84. Thwaitesia. A–C, Thwaitesia sp. A, female left spinning field. B, female PLS; note absence of FL (arrow, 212-1). C, male prosoma. D–F, T. margaritifera female. D, cheliceral fang and the characteristically sharp (107-1) teeth. E, tarsal comb. F, tarsus I, the modified ventral setae (arrows) are similar to those present in hadrotarsines, but unlike in hadrotarsines, are not tightly grouped (197-0). Scale bars: A, 50 Mm; B, D, 20 Mm; C, E, F, 100 Mm.
Figure 84 in Revision of the Neotropical Scleropactidae (Crustacea: Oniscidea)
Figure 84. Colomboscia gaigei (Pearse, 1915): ♂, 4.6 × 2.4 mm, cephalothorax 1.25 mm wide, pereiopod 7, second antenna (Colombia, Magdalena, Sierra Grande de Santa Marta, near San Lorenzo, KT-10, altitude 2250 m, bamboo cloud forest, from moss and litter, leg. H. G. Müller, 22 August 1985, SMF 19381).
Figs 84–86. 84 in Six new species of Tipula (Vestiplex) Bezzi (Diptera, Tipulidae) from Tibet
Figs 84–86. 84. Tipula (Vestiplex) bucera sp. nov., mating. 85. Habitat of 80K, Muotuo, Tibet, China. 86. Habitat of Yigong, Bomi, Tibet, China.
Fig. 84. Charinus africanus Hansen, 1921 in Systematic revision of the pantropical whip spider family Charinidae Quintero, 1986 (Arachnida, Amblypygi)
Fig. 84. Charinus africanus Hansen, 1921 (AMCC [LP 6943]), chelicera, ♀. A. Prolateral view. B. Retrolateral projection, opposite to bifid tooth. C. Setal row on cheliceral claw. D. Cheliceral claw teeth. E. Position of gland on joint between basal segment and cheliceral claw. F. Gland. G. Seta on cheliceral basal segment. H. Apex of basal segment seta. I. Seta on cheliceral claw. J. Setae on dorsal surface of cheliceral basal segment.
Fig. 84 in A revision of the Chilean Brachyglutini – Part 3. Revision of Achilia Reitter, 1890: A. frontalis species group (Coleoptera: Staphylinidae: Pselaphinae)
Fig. 84. Distribution map. (● red circles) Achilia testacea. (▲ blue triangles) A. frontalis. (◆ green diamonds) A. caracolana. (■ pink squares) A. trauco. (✷ yellow stars) A. longispina.
Abb. IV. 84 in IV. Tropisches Obst und Gemüse
Abb. IV. 84. Garcinia mangostana, Mangosten-Frucht. (Foto: Field Museum of Natural History, Chicago)
Figures 81–84. Cybocephalus huastecus T. R. Smith. 81 in Review of the Cybocephalidae (Coleoptera) of North America and the West Indies with descriptions of two new species of Cybocephalus Erichson
Figures 81–84. Cybocephalus huastecus T. R. Smith. 81) Antenna. 82) Median lobe. 83) Median lobe, lateral view. 84) Basal plate.
Figures 79–84. Species distribution maps. 79 in Synopsis of the subfamily Carventinae in New Zealand (Heteroptera: Aradidae)
Figures 79–84. Species distribution maps. 79) Lissaptera completa. 80) L. heissi new species. 81) Modicarventus kirmani new species. 82) M. wisei. 83) Neocarventus angulatus. 84) N. montanus new species.
Fig. 84 in Comb-footed spiders (Araneae: Theridiidae) in the tropical rainforest of Xishuangbanna, Southwest China
Fig. 84. Theridion echinatum sp. nov., holotype male. A. Pedipalpus, prolateral view; B. Pedipalpus, retrolateral view. Scale bar = 0.10 mm.
Figs 84–92 in Key to the fungus-feeder Phlaeothripinae species from China (Thysanoptera: Phlaeothripidae)
Figs 84–92. Pleta, fore wing and abdominal tergite. 84–88. Pleta. 84. Holothrips attenuatus. 85. Holothrips hagai. 86. Holothrips hasegawai. 87. Holothrips porifer. 88. Holothrips hunanensis. 89. Apelaunothrips moutanus, base of fore wing. 90. Baenothrips ryukyuensis, abdominal tergite V. 91. Apelaunothrips consimilis, abdominal tergites IX–X. 92. Apelaunothrips nigripennis, abdominal tergites IX–X.
Fig. 84. Mesepisternum. A in Revision of the Nearctic species of the Lasioglossum (Dialictus) gemmatum species complex (Hymenoptera: Halictidae)
Fig. 84. Mesepisternum. A. Lasioglossum gloriosum sp. nov., ♀, with punctures very dense (IS ≤ 0.5 PD). B. L. indagator sp. nov., ♀, with punctures sparser (IS ≤ 1 PD). Scale bars = 0.5 mm.
Figs 81–84 in New species and new records of Platygastrinae and Sceliotrachelinae from Togo (Hymenoptera: Platygastridae)
Figs 81–84. Synopeas tschirnhausi sp. n., female: (81) head in frontal view; (82) antenna; (83) scutellum and propodeal carinae in lateral view; (84) metasoma in dorsal view.
FIGURE 84 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 84. Pseudopoda daweiensis Zhang, Jäger & Liu, spec. nov., holotype, female: A. Epigyne, ventral; B. Schematic course of IDS, dorsal; C. Vulva, dorsal. Scale bars: A–C: 0.5 mm.
Figs 84–90 in Revision of the Harpagophoridae (Diplopoda, Spirostreptida) of southern Africa, including descriptions of five new species
Figs 84–90. Zinophora diplodonta (Attems, 1928). 84. Aboral view of gonopods (SAMC B8366). 85. Oral view of gonopods (SAMC B8366). 86–87. Telopodite. 88. Apical elements of telopodite. 89. Lateral view of collum; arrow indicates anterior end of millipede. 90. Oral view of first pair of male legs. c = telocoxal spines; cs = coxal shelf; f = femoral spine; l = lobe of posterior fold of telocoxite; lp = lateral process; p = pectinophore; sl = second lamella; t = thumb.
Figs 84–90 in Revision of Afrotropical Delia Robineau-Desvoidy, 1830 (Diptera: Anthomyiidae), with descriptions of six new species
Figs 84–90. Delia andersoni, male (Kenya): (84) cercal plate and surstyli; (85) ditto, lateral view; (86) sternites IV–V; (87) sternite V, lateral view; (88) distiphallus, lateral view; (89) ditto, lateral view; (90) hind femur. Scale bar = 0.1 mm.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.