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2,258 results for “Catfish”
FIGURE 1 in Parotocinclus yaka, a new species of armored catfish (Loricariidae: Hypoptopomatinae), from the Amazon basin in Brazil
FIGURE 1. Holotype of Parotocinclus yaka, female, 30.1 mm SL, MZUSP 123655. Brazil, Amazonas, Rio Tiquié basin, Igarapé Açaí near São Pedro Village.
FIGURE 2 in Exostoma tibetana, a new glyptosternine catfish from the lower Yarlung Tsangpo River drainage in southeastern Tibet, China (Siluriformes: Sisoridae)
FIGURE 2. Exotoma tibetana, holotype, IHB 20161046, 76.2 mm SL; China: Tibet: a mountain stream of the lower Yarlung Tsangpo River; dorsal and ventral views of head.
FIGURE 1 in Exostoma tibetana, a new glyptosternine catfish from the lower Yarlung Tsangpo River drainage in southeastern Tibet, China (Siluriformes: Sisoridae)
FIGURE 1. Exotoma tibetana, holotype, IHB 20161046, 76.2 mm SL; China: Tibet: a mountain stream of the lower Yarlung Tsangpo River.
FIGURES 1–5. Gyrodactylus anaspidus n in Neotropical Monogenoidea. 60. Two new species of Gyrodactylus (Monogenoidea: Gyrodactylidae) from the armored-catfish, Pareiorhaphis parmula Pereira (Loricariidae) and from the cascarudo, Callichthys callichthys (Linnaeus) (Callichthyidae) from Brazil
FIGURES 1–5. Gyrodactylus anaspidus n. sp. (Gyrodactylidae, Monogenoidea) on the body surface of Pareiorhaphis parmula (Loricariidae), holotype. 1. Whole body, ventral view. 2. MCO. 3. Hook. 4. Complex of anchors, superficial and deep bars. 5. Anchor.
FIGURES 6–10. Gyrodactylus polyadenus n in Neotropical Monogenoidea. 60. Two new species of Gyrodactylus (Monogenoidea: Gyrodactylidae) from the armored-catfish, Pareiorhaphis parmula Pereira (Loricariidae) and from the cascarudo, Callichthys callichthys (Linnaeus) (Callichthyidae) from Brazil
FIGURES 6–10. Gyrodactylus polyadenus n. sp. (Gyrodactylidae, Monogenoidea) on the body surface of Callichthys callichthys (Callichthyidae), holotype. 6. Whole body, ventral view. 7. Hook. 8. MCO and seminal vesicle. 9. Complex of anchors, superficial and deep bars, shield. 10. Anchor.
FIGURE 3 in Exostoma kottelati, a new species of catfish (Teleostei: Sisoridae) from Arunachal Pradesh, India
FIGURE 3. Lateral views of posterior part of adipose fin showing separation from the dorsal procurrent caudal-fin rays: a. Exostoma. kottelati sp. nov., holotype, RGUMF 457, 70.7 mm SL; b. E. labiatum, RGUMF 465, 50.9 mm SL; c. E. tenuicaudata: ZSI/APFS/P-929, holotype, 108 mm SL; d. E. mangdechhuensis (redrawn from Thoni & Gurung 2018, Fig. 13).
FIGURE 2 in Exostoma kottelati, a new species of catfish (Teleostei: Sisoridae) from Arunachal Pradesh, India
FIGURE 2. Map showing the type localities of four species of Exostoma in the Brahmaputra River basin: Exostoma kottelati sp. nov. (circle); E. tenuicaudata (rectangle), E. labiatum (triangle) and E. mangdechhuensis (star). Redrawn from Darshan et al., 2016.
FIGURE 4 in Exostoma kottelati, a new species of catfish (Teleostei: Sisoridae) from Arunachal Pradesh, India
FIGURE 4. Ventral views of mouth part: a & b. Exostoma labiatum, RGUMF 465, topotype, 50.9 mm SL; c & d. E. kottelati, holotype, RGUMF 457, 70.7 mm SL; e & f. E. tenuicaudata: ZSI/APFS/P-929, holotype, 108 mm SL; g. E. tibetanum (redrawn from Gong et al. 2018, Fig. 2). Images not to scale. (S: Striae)
FIGURE 7 in Mystus prabini, a new species of catfish (Siluriformes: Bagridae) from Arunachal Pradesh, north-eastern, India
FIGURE 7. Molecular phylogenetic analysis by Maximum likelihood method for cytochrome c oxidase subunit 1(CO1) gene sequences of Mystus prabini and eight congeners of Mystus with Sperata aor (as out group).
FIGURE 6 in Mystus prabini, a new species of catfish (Siluriformes: Bagridae) from Arunachal Pradesh, north-eastern, India
FIGURE 6. Percent genetic distance (Y-axis) of Mystus prabini (Mystus prabini1) against eight species of Mystus.
FIGURE 5 in Mystus prabini, a new species of catfish (Siluriformes: Bagridae) from Arunachal Pradesh, north-eastern, India
FIGURE 5. Gill rakers of the first branchial arch: a. Mystus prabini sp. nov., RGUMF 315, 105 mm SL, Paratype; b. Mystus dibrugarensis, RGUMF 307, 65.5 mm SL. [Gr: Gill raker, Gf: Gill filament]
FIGURE 3 in Mystus prabini, a new species of catfish (Siluriformes: Bagridae) from Arunachal Pradesh, north-eastern, India
FIGURE 3. Photograph of the type locality of Mystus prabini sp. nov., the Sinkin River at Lower Dibang Valley district, Arunachal Pradesh.
FIGURE 1 in Mystus prabini, a new species of catfish (Siluriformes: Bagridae) from Arunachal Pradesh, north-eastern, India
FIGURE 1. Lateral view of Mystus prabini sp. nov., RGUMF 499, 82.2 mm SL, holotype, the Sinkin River at Lower Dibang valley district, Arunachal Pradesh.
FIGURE 3 in Leiocassis rudicula (Teleostei: Siluriformes: Bagridae), a new catfish from eastern Borneo
FIGURE 3. Map showing collection localities of Leiocassis rudicula. Each symbol may represent more than a single locality.
FIGURE 1. Leiocassis rudicula, MZB 16529 in Leiocassis rudicula (Teleostei: Siluriformes: Bagridae), a new catfish from eastern Borneo
FIGURE 1. Leiocassis rudicula, MZB 16529, holotype, 102.8 mm SL; Borneo: Kalimantan Timur, Sungai Petung Kanan.
FIGURE 2 in Leiocassis rudicula (Teleostei: Siluriformes: Bagridae), a new catfish from eastern Borneo
FIGURE 2. Lateral views of heads of: a. Leiocassis rudicula, holotype, MZB 16529, 102.8 mm SL; b. other congeners (L. micropogon, ZRC 41846, 143.5 mm SL illustrated). Arrow indicates concavity above orbit. Images not to scale.
FIGURE 4. Chiloglanis mongoensis, a in A new species of suckermouth catfish (Mochokidae: Chiloglanis) from the Rio Mongo in Equatorial Guinea
FIGURE 4. Chiloglanis mongoensis, a new species, holotype, USNM 446973, male ALC, 28.0 mm SL; Equatorial Guinea, Centro Sur, Rio Mongo near Mosumu, 1.72809° N, 10.088° W; in dorsal, lateral, and ventral views. Photographs by S. Rare- don
FIGURE 3 in A new species of suckermouth catfish (Mochokidae: Chiloglanis) from the Rio Mongo in Equatorial Guinea
FIGURE 3. Scatterplot of total numbers of premaxillary teeth versus PC2 from principal components analysis of 44 log- transformed measurements (A). Reduced-major axis regression of log-transformed total number of premaxillary teeth on log- transformed standard length (B). Trendlines are shown for each species; slopes for each species are equal (p-value = 0.5029) and the y-intercept (i.e., elevation) between each species are significantly different (p-value = 0.0446). Holotype of Chiloglanis mongoensis denoted by star.
FIGURE 1 in A new species of suckermouth catfish (Mochokidae: Chiloglanis) from the Rio Mongo in Equatorial Guinea
FIGURE 1. Type localities of Chiloglanis harbinger (triangle) and Chiloglanis mongoensis (star). All other localities sampled during 2017 expedition shown in white circles.
FIGURE 2 in A new species of suckermouth catfish (Mochokidae: Chiloglanis) from the Rio Mongo in Equatorial Guinea
FIGURE 2. Scatterplot of PC1 versus PC2 from principal component analysis of 44 log-transformed measurements from 12 specimens. Holotype of Chiloglanis mongoensis denoted by star.
ScienceDex guides
Understand access before you commit
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)
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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.