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1,073 results for “taxon”
FIGURE 10 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 10: Argestes angolaensis sp. nov., A. female P4, note exp3 with only 1 inner seta, B. P4 exp of another female, showing small first inner seta (triangular arrow). Scales: 50µm.
FIGURE 2 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 2: Argestes angolaensis sp. nov., female. A. Habitus, lateral view, B. Habitus, dorsal view. Scales: 100µm.
FIGURE 1 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 1: Map of the southeastern Atlantic, indicating the geographical position of stations #325 and #346, sampled quantitatively with the Multicorer (from Rose et al., 2005)
FIGURE 6 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 6: Argestes angolaensis sp. nov., female. A. Md gnathobase, shown from different positions, B. Md palpus. Scale: 50µm.
FIGURE 5 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 5: Argestes angolaensis sp. nov., female. A. A2, A'. A2 of counterpart, showing exp, B. Mxl without praecoxal arthrite, B'. precoxal arthrite, C. Mx, D. Mxp. Scales: 50µm.
FIGURE 4 in Argestes angolaensis sp. nov. (Copepoda: Harpacticoida: Argestidae) from the Angola Basin (Southeast Atlantic), and the phylogenetic characterization of the taxon Argestes Sars, including the redescription of A. mollis Sars, 1910, and A. reductus (Itô, 1983) *
FIGURE 4: Argestes angolaensis sp. nov., female. A. A1, general shape, B. A1, setation of single segments. Scale: 50µm.
FIGURE 3. Maximum parsimony phylogenetic relationships with the taxon Pituna poranga removed. Heuristic search with 50 in Description of a new annual rivulid killifish genus from Venezuela
FIGURE 3. Maximum parsimony phylogenetic relationships with the taxon Pituna poranga removed. Heuristic search with 50 random additions and TBR branch swapping resulted in a single most parsimonious topology of 5706 steps. Numbers above nodes are bootstrap values based on 2000 pseudoreplicates (25 random additions each); only values over 50 are reported. Numbers below branches are Bremer support indices which are equivalent to unreversed synapomorphies.
FIGURE 5 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 5. Morphological differences between Glaucalges tytonis sp. n. (left) and G. attenuatus (right). A – male hysteronotum, B – epimerites I of male, C – female hysteronotal shield with associated setae.
FIGURE 7 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 7. Idiosoma dimensions in Glaucalges tytonis sp. n. (white circles, N=12) and G. attenuatus (black circles, N=12).
FIGURE 3 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 3. Glaucalges tytonis sp. n., female. A – ventral view, B – dorsal view. CO – copulatory opening.
FIGURE 2 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 2. Distal podomeres of Glaucalges tytonis sp. n., dorsal view, male. Designations of setae after Gaud and Atyeo (1996). A – tarsus I, B – tibia and tarsus II, C – tarsus III, D – tarsus IV.
FIGURE 1 in Glaucalges tytonis sp. n. (Analgoidea, Xolalgidae) from the barn owl Tyto alba (Strigiformes, Tytonidae): compiling morphology with DNA barcode data for taxon descriptions in mites (Acari)
FIGURE 1. Glaucalges tytonis sp. n., male. A – ventral view, B – dorsal view. Setal designations after Gaud and Atyeo (1996).
FIGURE 3 in Thalasseleotrididae, new family of marine gobioid fishes from New Zealand and temperate Australia, with a revised definition of its sister taxon, the Gobiidae (Teleostei: Acanthomorpha)
FIGURE 3. Lower part of left side first branchial arch and hyoid arch in dorsal view showing degree of development of gill membrane (white) in: A) the odontobutid Micropercops swinhonis, same specimen as in Fig. 1; B) the thalasseleotridid Grahamichthys radiatus, same specimen as in Fig. 1. Abbreviations: ACH, anterior ceratohyal; CB1, ceratobranchial 1; DHH, dorsal hypohyal; GM, gill membrane; HB1, hypobranchial 1; PCH, posterior ceratohyal; VHH, ventral hypohyal. Gill rakers not illustrated. Scale bars = 1 mm.
FIGURE 1 in Thalasseleotrididae, new family of marine gobioid fishes from New Zealand and temperate Australia, with a revised definition of its sister taxon, the Gobiidae (Teleostei: Acanthomorpha)
FIGURE 1. Ventral view of right ceratobranchial 5 of: A) the odontobutid Micropercops swinhonis (Günther), AMS I.27275, 42 mm SL; B) the thalasseleotridid Grahamichthys radiatus, AMS I.41350-001, 51.8 mm SL; C) the thalasseleotridid Thalasseleotris adela, AMS I.18241-035, 27.1 mm SL; D) the gobiine gobiid Lophogobius cyprinoides (Pallas), AMS uncat., 41 mm SL. Arrow in D points to ventral process; scale bars = 0.5 mm.
FIGURE 6 in Thalasseleotrididae, new family of marine gobioid fishes from New Zealand and temperate Australia, with a revised definition of its sister taxon, the Gobiidae (Teleostei: Acanthomorpha)
FIGURE 6. Dorsal view of left dorsal gill arches of: A) the odontobutid Perccottus glenii, same specimen as in Fig. 2; B) the thalasseleotridid Grahamichthys radiatus, same specimen as in Fig. 1; C) the thalasseleotridid Thalasseleotris adela, same specimen as in Fig. 1; D) the gobiine gobiid Callogobius maculipinnis (Fowler), MPM 45773, 31.6 mm SL. Abbreviations: IAC – interarcual cartilage; EB1–4, epibranchials 1–4; PB1–3, pharyngobranchials 1–3; PB4C, pharyngobranchial 4 cartilage; PB4TP, pharyngobranchial 4 toothplate. Gill rakers not illustrated. Scale bars = 0.5 mm.
FIGURE 5 in Thalasseleotrididae, new family of marine gobioid fishes from New Zealand and temperate Australia, with a revised definition of its sister taxon, the Gobiidae (Teleostei: Acanthomorpha)
FIGURE 5. Lateral view of left posterior ceratohyal and interhyal, and dorsal view of posterior ceratohyal with interhyal removed of: A) the odontobutid Perccottus glenii; B) the eleotridid Gobiomorus dormitor; C) the eleotridid Eleotris melanosoma; D) the eleotridid Dormitator latrifrons; E) the thalasseleotridid Thalasseleotris adela; F) the thalasseleotridid Grahamichthys radiata; G) the gobiine gobiid Gobius niger; H) the gobionelline gobiid Stenogobius zurstrasseni; I) the gobiine gobiid Valenciennea sexguttata. All specimens as in Fig. 4. Scale bars = 1 mm. AC, anterior ceratohyal; PC, posterior ceratohyal; IH, interhyal.
FIGURE 4 in Thalasseleotrididae, new family of marine gobioid fishes from New Zealand and temperate Australia, with a revised definition of its sister taxon, the Gobiidae (Teleostei: Acanthomorpha)
FIGURE 4. Lateral (left) and dorso-lateral (right) views of left interhyal of: A) the odontobutid Perccottus glenii, same specimen as in Fig. 2; B) the eleotridid Gobiomorus dormitor, same specimen as in Fig. 2; C) the eleotridid Eleotris melanosoma, same specimen as in Fig. 2; D) the eleotridid Dormitator latrifrons (Richardson), ANSP 140703, 53.1 mm SL; E) the thalasseleotridid Thalasseleotris adela, same specimen as in Fig. 2; F) the thalasseleotridid Grahamichthys radiata, same specimen as in Fig. 2; G) the gobiine gobiid Gobius niger, same specimen as in Fig. 2; H) the gobionelline gobiid Stenogobius zurstrasseni (Popta), USNM 264770, 45.9 mm SL (right side reversed); I) the gobiine gobiid Valenciennea sexguttata (Valenciennes in Cuvier & Valenciennes), MPM 43110, 55.5 mm SL. Arrows in E–I indicate cup-shaped process. Scale bars = 0.5 mm.
FIGURE 14 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 14. Geographic distribution of Adenomera martinezi and Adenomera saci sp. nov. on a topographic map. Type localities: Circle—A. martinezi (Cachimbo, Pará); Square—Adenomera saci sp. nov. (Chapada dos Veadeiros, Goiás). Triangles correspond to the distributional records for Adenomera saci sp. nov.: (1) Sonora, State of Mato Grosso do Sul; (2) Alto Araguaia, (3) Pontal do Araguaia, (4) Ribeirão Cascalheira, and (5) Santa Terezinha, State of Mato Grosso; (6) Mineiros/ Chapadão do Céu, (7) Cristalina, (8) Brasília, (9) Niquelândia, (10) Minaçu, and (11) Buritinópolis, State of Goiás/Distrito Federal; (12) Formoso do Araguaia/Ilha do Bananal, (13) Almas, and (14) Rio da Conceição/Jalapão, State of Tocantins. Records were based on our data and extracted from Heyer (1973); Vitt et al. (2005); Cintra et al. (2009); Moreira et al. (2009); Oda et al. (2009); Silva Jr. et al. (2009); Kopp et al. (2010); Morais et al. (2011); Valdujo et al. (2012).
FIGURE 13 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 13. Lateral (A) and dorsal (B) views, and schematic diagram of the oral disc (C) of a tadpole (stage 37) of Adenomera saci sp. nov. from Cristalina, State of Goiás.
FIGURE 5 in Taxonomic circumscription of Adenomera martinezi (Bokermann, 1956) (Anura: Leptodactylidae: Leptodactylinae) with the recognition of a new cryptic taxon through a bioacoustic approach
FIGURE 5. Live adult male specimens of Adenomera saci sp. nov. from the type locality (Chapada dos Veadeiros, Goiás): (A) Holotype AAG-UFU 1339 (SVL 22.5 mm); (B) Voucher paratopotype AAG-UFU 0109 (SVL 22.5 mm); (C) Paratopotype AAG-UFU 0108 (SVL 20.1 mm); (D) Paratopotype AAG-UFU 0762 (SVL 20.5 mm); (E) Paratopotype AAG-UFU 0763 (SVL 22.0 mm).
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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)
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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.