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240 results for “Scorpaeniformes”
FIGURE 2 in Taxonomic review of the Sebastes pachycephalus complex (Scorpaeniformes: Scorpaenidae)
FIGURE 2. Schematic illustrations of Sebastes pachycephalus (A) and S. nudus (B), indicating the squamation pattern below the dorsal-fin spines. (A) FAKU 65097, 154.8 mm SL, Susaki, Shimoda, Shizuoka, Japan; (B) FAKU 84093, 158.3 mm SL, Miyako, Iwate, Japan.
FIGURE 8 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 8. Lateral view of Thysanophrys tricaudata, sp. nov., holotype, USNM 268919, 86 mm SL, from Sri Lanka.
FIGURE 6 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 6. Lateral view of Thysanophrys springeri, sp. nov., holotype, USNM 344831, 89 mm SL, from Melita Bay, Eritrea.
FIGURE 11 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 11. Ratios of greatest orbital diameter in SNL in five species of Thysanophrys from the western Indian Ocean.
FIGURE 10 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 10. Lateral view of Cymbacephalus armatus Fowler 1938, USNM 90064 holotype 111 mm SL, from Sirun I., Philippines.
FIGURE 3 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 3. Lateral view of Thysanophrys rarita, sp. nov., holotype, USNM 316125, 127 mm SL, from Somalia.
FIGURE 1 in Descriptions of four new species of Thysanophrys (Scorpaeniformes: Platycephalidae) from the Western Indian Ocean
FIGURE 1. Lateral view of Thysanophrys randalli, sp. nov., holotype, USNM 341987, 91 mm SL from Mauritius.
FIGURE 2 in Cottus schitsuumsh, a new species of sculpin (Scorpaeniformes: Cottidae) in the Columbia River basin, Idaho-Montana, USA
FIGURE 2. Outgroup-rooted neighbor-joining tree of Cottus from all available haplotypes based on uncorrected p-distances for cytochrome c subunit 1 sequences. State and province abbreviations are given for North American samples, and river basins are noted for C. beldingii, C. confusus, and C. schitsuumsh in Idaho and Montana. Cottus poecilopus, C. reinii, those in the Cottopsis clade (Kinziger et al. 2005), and the outgroup Leptocottus armatus are not shown.
FIGURE 3 in Cottus schitsuumsh, a new species of sculpin (Scorpaeniformes: Cottidae) in the Columbia River basin, Idaho-Montana, USA
FIGURE 3. Plot of the first two principal coordinates based on 11 microsatellite loci for Cottus schitsuumsh (triangles) and potentially sympatric C. cognatus (diamonds) and C. rhotheus (squares).
FIGURE 1 in Cottus schitsuumsh, a new species of sculpin (Scorpaeniformes: Cottidae) in the Columbia River basin, Idaho-Montana, USA
FIGURE 1. Distribution of specimens of Cottus schitsuumsh (filled circles; type location, unfilled star) examined within the upper Spokane River (the Couer d'Alene and St. Joe rivers) in Idaho and the Clark Fork River in Montana. Locations of specimens of other Cottus species examined from adjacent basins are depicted (unfilled squares); others beyond this area are noted in the text. Inset: Columbia River basin in the United States.
FIGURE 7 in Cottus schitsuumsh, a new species of sculpin (Scorpaeniformes: Cottidae) in the Columbia River basin, Idaho-Montana, USA
FIGURE 7. Lateral pores absent on the caudal peduncle on Cottus schitsuumsh (left) and present on Cottus confusus (right).
FIGURE 1 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 1. Scheme of measurement, from Taliev (1955): 1−2, standard length; 1−3, total length; 1−4, predorsal length; 1−8, preanal length; 4−5, maximum body depth; 6−7, depth of caudal peduncle; 12−2, length of caudal peduncle; 4−9, length of first dorsal-fin base; 9−10, length of second dorsal-fin base; 11−12, length of anal-fin base; 13−14, length of longest first dorsal-fin ray; 15−16, length of longest second dorsal-fin ray; 17−18, length of longest anal-fin ray; 27−28, pectoral fin length; 19−20, pelvic fin length; 1−26, head length; 21−22, head depth; 23−24, snout length; 24−25, horizontal eye diameter; 25−26, postorbital length; 1−29, upper jaw length.
FIGURE 8 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 8. Map showing the type locality of Cottus gratzianowi sp. nov. in the Ukhtomitsa River, tributary of Modlona River, Lake Vozhe basin in the Onega River system.
FIGURE 7 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 7. Result of the DFA carried out on morphometric characters to discriminate Cottus gratzianowi sp. nov. (solid circles) and C. koshewnikowi: Volga (circles), Northern Dvina (triangles), and Pechora (squares).
FIGURE 6 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 6. Radiographs of Cottus gratzianowi sp. nov. (a) with 10+23 vertebrae and Cottus koshewnikowi (b) with 11+23 vertebrae. Arrow shows first caudal vertebra.
FIGURE 2 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 2. Cottus gratzianowi sp. nov., holotype, ZIN 55596, male 63.3 mm SL: lateral view (a), dorsal view of head and anterior body (b), ventral view of head and anterior body (c).
FIGURE 5 in A new species of Cottus from the Onega River drainage, White Sea basin (Actinopterygii: Scorpaeniformes: Cottidae)
FIGURE 5. Photograph of pectoral fin. Arrows show branched middle pectoral-fin rays in Cottus gratzianowi sp.nov. (a) and unbranched middle pectoral-fin rays in Cottus koshewnikowi (b).
Fig. 2 in wo New Species of Snailfishes of the Genus Careproctus (Scorpaeniformes: Liparidae) from the Bering Sea and Eastern North Pacific Ocean, with a Redescription of Careproctus ovigerus
Fig. 2. (A) Right medial view of pectoral girdle and teeth of Careproctus lycopersicus, new species, paratype, UW 119817, 149 mm. (B) Right medial view of pectoral girdle and teeth of Careproctus kamikawai, new species, paratype, UW 150325, 153 mm. (C) Right medial view of pectoral girdle and inner and outer teeth of Careproctus ovigerus, UW 118518, 180 mm. Stippled areas represent cartilage.
Fig. 4 in Two New Variegated Snailfishes of the Genus Careproctus (Teleostei: Scorpaeniformes: Liparidae) from the Aleutian Islands, Alaska
Fig. 4. Scatter plots of significant morphometric characters distinguishing Careproctus comus, new species, and Careproctus faunus, new species: (A) Interorbital width; (B) Snout length; (C) Anal-fin connection to caudal-fin length; (D) Caudal-fin base depth.
Fig. 3 in wo New Species of Snailfishes of the Genus Careproctus (Scorpaeniformes: Liparidae) from the Bering Sea and Eastern North Pacific Ocean, with a Redescription of Careproctus ovigerus
Fig. 3. Distribution of two new species, Careproctus lycopersicus and C. kamikawai, and C. ovigerus in the eastern Bering Sea and North Pacific Ocean based on material examined and underwater observations of Stein et al. (2006). Bottom contour illustrated is 200 m.
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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
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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.