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849 results for “species diagnosis”
Fig. 17. Cochliopodium actinophorum CCAP 1537 in Scale Structure of Cochliopodium actinophorum (Auerbach, 1856) (Amoebozoa, Cochliopodiidae) and a New Diagnosis of this Species
Fig. 17. Cochliopodium actinophorum CCAP 1537/10, diagram, illustrating the scale structure as deduced from ultrathin sections and shadowed whole mounts. Scale bar: 0.25 μm.
Figs 12–16. Cochliopodium actinophorum CCAP 1537 in Scale Structure of Cochliopodium actinophorum (Auerbach, 1856) (Amoebozoa, Cochliopodiidae) and a New Diagnosis of this Species
Figs 12–16. Cochliopodium actinophorum CCAP 1537/10, transmission electron micrographs. 12–14. Scales in a vertical section (12) and in tangential sections (13–14). 15. Section of an amoeba at lower magnification showing nucleus (n) and dictyosomes (d). 16. Dictyosomes at higher magnification showing Golgi attachment (arrowheads). Scale bars: 1 μm throughout.
Fig. 3 in Distributional Range Extension of the Shallow Water Scorpionfish Parascorpaena poseidon (Perciformes: Scorpaenidae), with a Revised Diagnosis of the Species
Fig. 3. Lateral (A) and dorsal (B) views of head of Parascorpaena poseidon (NSMT-P 17865, 97.8 mm SL). Bars indicate 5 mm.
Fig. 4 in Distributional Range Extension of the Shallow Water Scorpionfish Parascorpaena poseidon (Perciformes: Scorpaenidae), with a Revised Diagnosis of the Species
Fig. 4. Relationships between body width (A); head width (B); snout length (C); interorbital width at vertical midline of eye (D); upper-jaw length (E); maxilla depth (F); postorbital length (G); orbit diameter (H); and separation between opercular spine tips (I) (all as % of SL) and standard length (mm) in Parascorpaena poseidon, showing ontogenetic changes. Star indicates holotype [except for snout length, interorbital width at vertical midline of eye, and upper-jaw length—see text regarding measurements by Chou and Liao (2022)].
Fig. 2 in Distributional Range Extension of the Shallow Water Scorpionfish Parascorpaena poseidon (Perciformes: Scorpaenidae), with a Revised Diagnosis of the Species
Fig. 2. Variously-sized preserved specimens of Parascorpaena poseidon. A, FMNH 75818, 1 of 27 specimens, 35.3 mm SL, Galle, Sri Lanka; B, FMNH 75818, 1 of 27 specimens, 65.3 mm SL, Galle, Sri Lanka; C, NSMT-P 17865, 97.8 mm SL, Yaku-shima Island, Osumi Islands, Kagoshima, Japan; D, BPBM 27680, 1 of 2 specimens, 115.4 mm SL, Kovalam, Kerala India.
Fig. 1 in Distributional Range Extension of the Shallow Water Scorpionfish Parascorpaena poseidon (Perciformes: Scorpaenidae), with a Revised Diagnosis of the Species
Fig. 1. Fresh specimen of Parascorpaena poseidon from Kovalam, Kerala, India (BPBM 27680, 1 of 2 specimens, 115.4 mm SL). Photo by J. E. Randall (BPBM).
Fig. 5 in Distributional Range Extension of the Shallow Water Scorpionfish Parascorpaena poseidon (Perciformes: Scorpaenidae), with a Revised Diagnosis of the Species
Fig. 5. Distributional records of Parascorpaena poseidon, based on original description (triangles and star), literature record as P. mossambica (closed circle), and present study (open circles). Star indicates type locality.
Figs 11–14 in Phaonia Oxystoma-Group (Diptera, Muscidae): Diagnosis, Key To Identification, Description Of Two New Species And Synonymic Notes
Figs 11–14. Phaonia sublatilamella XUE et ZHAO sp. n. (male): 11 = abdomen in dorsal view, 12 = cerci in posterior view, 13 = terminalia in profile, 14 = sternite 5 in ventral view
Figs 1–10 in Phaonia Oxystoma-Group (Diptera, Muscidae): Diagnosis, Key To Identification, Description Of Two New Species And Synonymic Notes
Figs 1–10. Phaonia bacillirostris XUE et WANG, sp. n., male: 1 = head in profile, 2 = abdomen in dorsal view, 3 = cerci in posterior view, 4 = terminalia in profile, 5 = sternite 5 in ventral view, 6 = sternite 5 in profile. Female: 7 = sternites 1 to 5, 8 = dorsal ovipositor in profile, 9 = ovipositor in ven- tral view, 10 = spermatheca
Figs 4–8 in Diagnosis Of The Coenosia Mollicula-Group (Diptera: Muscidae), With Descriptions Of Five New Species From China
Figs 4–8. Coenosiaadrohalter sp. n., male: 4 = dorsalviewofabdomen, 5 = sternite 5 inven- tralview, 6 = posteriorviewofcerci, 7 = terminaliainprofile, 8 = halter. Scales: 0.5 mmfor
Fig. 6 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 6. Dentodiaptomus orientalis, new species, female: A, habitus, dorsal view; B, pediger 4–5 and urosome, dorsal view; C, P5, posterior view; D, left P5 Exp-2–3, posterior view; E, P5, frontal view.
Fig. 3 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 3. Dentodiaptomus orientalis, new species, male: A, habitus, dorsal view; B, urosome, dorsal view; C, urosome, ventral view; D, right antennule (segments I–XXII).
Fig. 8 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 8. Dentodiaptomus javanus (A–F) and Phyllodiaptomus (Ctenodiaptomus) praedictus (G–H), male: A, habitus, dorsal view; B, C, G, P5, posterior view; D, right P5 basis and Exp-1, posterior view; E, right P5 Exp-2, posterior view; F, left P5 basis, Exp (white arrow points to a denticle on the inner margin of the Exp-2), and Enp, frontal view; H, intercoxal sclerite and left P5, posterior view.
Fig. 4 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 4. Dentodiaptomus orientalis, new species, male: A, left antennule; B, antenna; C, mandible; D, maxillule; E, maxilla; F, maxilliped.
Fig. 1. A in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 1. A map showing the distribution of Dentodiaptomus orientalis, new species, from Thailand and Cambodia. Legend: black triangle = sampling location, black circle = city name.
Fig. 2 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 2. Dentodiaptomus orientalis, new species, male: A, habitus, dorsal view; B, P5, posterior view; C, P5, frontal view; D, left P5 Enp and Exp, posterior view.
Fig. 7 in A new species of copepod (Copepoda: Calanoida) from the floodplain of the lower Mekong River Basin in Thailand and Cambodia, with an amended diagnosis of the genus Dentodiaptomus Shen & Tai, 1964
Fig. 7. Dentodiaptomus orientalis, new species, female: A, pediger 5 and genital double-somite, dorsal view; B, P5, posterior view; C, P5, frontal view.
Figures 6‒9 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 6‒9. Bursaustium zabolensis Noei sp. nov. (larva) – 6. Ti I-Ta I; 7. Tr I-Ge I; 8. Ti II -Ta II; 9. Tr II-Ge II.
Figures 13‒17. 13–16 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 13‒17. 13–16. Bursaustium zabolensis Noei sp. nov. (larva) – Dorsal scutum position on dorsal surface of propodosoma; 17. Dorsal scutum of the holotype of B. gaspari, sent by Prof. R. Haitlinger.
Figures 3‒5 in Modification in the generic diagnosis of Bursaustium (Acari: Erythraeidae) with description of a new species from southeast of Iran
Figures 3‒5. Bursaustium zabolensis Noei sp. nov. (larva) – 3. Ventral view of idiosoma; 4. Ventral view of palpal tibia and tarsus; 5. Dorsal (right) and ventral (left) view of gnathosoma.
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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.