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2,258 results for “Catfish”
FIGURE 3 in Mystus irulu, a new species of bagrid catfish from the Western Ghats of Karnataka India (Teleostei: Bagridae)
FIGURE 3. Dorsal-fin profile of A. Mystus irulu, paratype, ZSI/MBRC/F-2487, 116 mm SL, B. M. cavasius, CIARI/FF-87, 159 mm SL, C. M. seengtee, CIARI/FF-88, 94.7 mm SL. (Dotted line showing the shape of the dorsal fin.)
FIGURE 5 in Glyptothorax yuensis, a new species of sisorid catfish (Teleostei: Sisoridae) from Myanmar
FIGURE 5. Dorsal view of head of Glyptothorax: A, G. yuensis, ZSI FF 9015, 79 mm SL; B, G. ngapang ZSI FF 7087, 99 mm SL; C, G. longjiangensis, CAS 226064, 117.1 mm SL (from Ng et al., 2012). Figures not to scale.
FIGURE 3 in Glyptothorax yuensis, a new species of sisorid catfish (Teleostei: Sisoridae) from Myanmar
FIGURE 3. Schematic illustration of adipose fin patterns in Glyptothorax found in Chindwin-Irrawaddy drainage. A, G. yuensis, ZSI FF 9015, 79 mm SL; B, G. chivomensis (from Arunkumar & Moyon, 2017); C, G. granulus, ZSI FF 4142, 72.5 mm SL; D, G. ngapang, ZSI FF 4141, 90.5 mm SL; E, G. igniculus, ZSI FF 7088, 52.1 mm SL; F, G. ventrolineatus, ZSI FF 4227, 83.0 mm SL; G, G. senapatiensis, ZSI FF 4971, 51.5 mm SL; H, G. panda (from Ferraris & Britz, 2005), I, G. rugimentum (from Ng & Kottelat, 2008); J, G. burmanicus, ZSI F 10877/1, 102 mm SL; K. G. manimaculatus (from Ng & Kottelat, 2008); L, G. trilineatus, ZSI F 10380/1, 78.5 mm SL. Illustrations without scaled.
FIGURE 2 in Glyptothorax yuensis, a new species of sisorid catfish (Teleostei: Sisoridae) from Myanmar
FIGURE 2. Thoracic adhesive apparatus of Glyptothorax found in the Chindwin-Irrawaddy drainage. A, G. yuensis, ZSI FF 9015, 79 mm SL; B, G. burmanicus ZSI FF 8319, 116 mm SL; C, G. granulus ZSI FF 7581, 63 mm SL; D, G. igniculus ZSI FF 7088, 52.1 mm SL; E, G. ngapang ZSI FF 7087, 99 mm SL; F, G. senapatiensis ZSI FF 4971, 51.5 mm SL; G. G. trilineatus ZSI F 10380/1, 78.5 mm SL; H, G. ventrolineatus ZSI FF 7580, 69 mm SL. Figures not to scale.
FIGURE 2. A in Type locality, distribution and conservation of the threatened catfish Taunayia bifasciata (Eigenmann & Norris 1900) (Siluriformes: Heptapteridae) in the Atlantic Forest streams of Southeastern Brazil
FIGURE 2. A. Catalog ledger of the Indiana University with catalog number IU 9291 (arrow) and B. Original jar labels of the holotype of Nannoglanis bifasciata Eigenmann & Norris 1900 CAS 75771(IU 09291). Indicating 'Alto da Serra', as the type locality. Photo by David Catania.
FIGURE 3 in Type locality, distribution and conservation of the threatened catfish Taunayia bifasciata (Eigenmann & Norris 1900) (Siluriformes: Heptapteridae) in the Atlantic Forest streams of Southeastern Brazil
FIGURE 3. Geographic distribution of Taunayia bifasciata. Symbols: white star: type locality of T. bifasciata; blue circle: records in Tietê river basin; red diamonds: records in Paraíba do Sul river basin; purple square: records Itapanhaú River basin; orange pentagon: new record of T. bifasciata in Mambucaba river basin. White outline: Serra da Bocaina National Park; black lines: state limits.
FIGURE 4. A in Type locality, distribution and conservation of the threatened catfish Taunayia bifasciata (Eigenmann & Norris 1900) (Siluriformes: Heptapteridae) in the Atlantic Forest streams of Southeastern Brazil
FIGURE 4. A. Sampling site of Taunayia bifasciata (Eigenmann & Norris 1900) in the Mambucaba river basin at the Serra da Bocaina National Park, Rio de Janeiro State, Brazil. B. The Veados waterfall, which is just upstream the sampling site.
FIGURE 1 in Type locality, distribution and conservation of the threatened catfish Taunayia bifasciata (Eigenmann & Norris 1900) (Siluriformes: Heptapteridae) in the Atlantic Forest streams of Southeastern Brazil
FIGURE 1. Specimens of Taunayia bifasciata (Eigenmann & Norris 1900) in dorsal (tops), lateral (middles), and ventral (bottoms) views. Left is the holotype of Nannoglanis bifasciatus Eigenmann & Norris 1900 (CAS 75771), photo by David Catania; right is the specimen collected in the Mambucaba river basin, Serra da Bocaina National Park, Rio de Janeiro State, Brazil (UFRN 5592), photo by Lucas Medeiros. Scale bar: 10 mm.
FIGURE 4 in Pseudolaguvia meghalayaensis, a new diminutive sisorid catfish (Teleostei: Siluriformes) from Northeastern India
FIGURE 4. Type locality of Pseudolaguvia meghalayaensis (Rongkil and Rongdal stream at Rajasimla, North Garo Hill, Meghalaya, India).
FIGURE 3 in Pseudolaguvia meghalayaensis, a new diminutive sisorid catfish (Teleostei: Siluriformes) from Northeastern India
FIGURE 3. Map showing collection locality of Pseudolaguvia meghalayaensis. Solid star represents the collection site.
FIGURE 1 in Pseudolaguvia meghalayaensis, a new diminutive sisorid catfish (Teleostei: Siluriformes) from Northeastern India
FIGURE 1. Pseudolaguvia meghalayaensis, ZSI FF 9406, holotype, 28.7 mm SL; A. lateral, B. dorsal, and C. ventral. ADBUMF 1610/2, paratype, 25.4 mm SL; D. lateral.
FIGURE 2 in Pseudolaguvia meghalayaensis, a new diminutive sisorid catfish (Teleostei: Siluriformes) from Northeastern India
FIGURE 2. Schematic illustrations of thoracic adhesive apparatus of: a. Pseudolaguvia meghalayaensis, ZSI FF 9406, holotype, 28.7 mm SL; b. P. assula, CAS 23552, holotype, 22.8 mm SL (Ng & Conway, 2013); c. P. austrina, CUSAT F/212, 32.2 mm SL, illustrated (Radhakrishnan et al., 2010); d. P. ferula, UMMZ 245986, 30.0 mm SL, illustrated (Ng, 2006); e. P. ferruginea, UMMZ 248800, 28.9 mm SL, illustrated (Ng, 2009); f. P. foveolata, UMMZ 244867, 30.0 mm SL, illustrated (Ng, 2005); g. P. inornata, UMMZ 245580, holotype, 25.8 mm SL (Ng, 2005); h. P. jiyaensis, ZSI/V/APRC/P 1035, 29.6 mm SL (Tamang & Sinha, 2014); i. P. magna, ZSI/V/APRC/P 948, 45.4 mm SL (Tamang & Sinha, 2014); j. P. lipillicola, CRG-SAC 2012.4.1, holotype, 27.2 mm SL (Britz et al., 2013); k. P. nubila, ZSI FF 4861, holotype, 29.3 mm SL (Ng et al., 2013); l. P. shawi, UMMZ 343652, 27.0 mm SL, illustrated (Ng, 2006); m. P. spicula, PUCMF 1032, holotype, 31.1 mm SL (Ng & Lalramliana, 2010); n. P. vespa, ZSI/APRC/P 1882, holotype, 30.6 mm SL (Praveenray et al., 2021); and o. P. viriosa, RGUMF 006, holotype, 26.0 mm SL (Ng & Tamang, 2012). Dotted line indicates posteriormost extent of thoracic adhesive apparatus; arrow indicates tip of postcoracoid process. Images not to scale.
FIGURE 7. A in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 7. A. Ribeirão Taquaruçuzinho, type locality of Rineloricaria quilombola. and B. ribeirão São João, at Porto Nacional, TO.
FIGURE 6 in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 6. Distribution map of Rineloricaria quilombola. White circle corresponds to the type locality.
FIGURE 5 in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 5. Dorsal and ventral views of the anterior portion of the body in Rineloricaria quilombola; UNT 00943, male, 111.6 mm SL (A and B) and female, 120.0 mm SL (C and D).
FIGURE 3 in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 3. Color variation in Rineloricaria quilombola A. UNT 7911, 77.2 mm SL from córrego Cipó and B. UNT 1029, 72.8 mm SL, from córrego Taboca, both at Paranã, TO (upper Tocantins River basin); and C. UNT uncatalogued, 62.9 mm SL from ribeirão São João, at Porto Nacional, TO (median Tocantins River basin).
FIGURE 2 in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 2. Ventral views of the head and mouth in A. Rineloricaria quilombola MZUSP 126901(h), 116.3 mm SL and B. R. osvaldoi, MZUSP 89075 (p), 125.7 mm SL (Image B by Leandro Sousa).
FIGURE 1 in Rineloricaria quilombola: a new species of whiptail catfish (Siluriformes, Loricariidae, Loricariinae) from upper and middle Tocantins River basin, Brazil
FIGURE 1. Holotype of Rineloricaria quilombola, n. sp. MZUSP126901, 116.3 mm SL, in A. dorsal, B. lateral and C. ventral views.
FIGURE 4 in Redescription of the striped catfish Mystus carcio (Hamilton) (Siluriformes: Bagridae)
FIGURE 4. Comparison of skulls, showing cranial fontanel: a. Mystus carcio, MUMF 9518, 46.6 mm SL; b. Mystus tengara, MUMF 9520, 71.5 mm SL; c. Mystus vittatus, MUMF 9527, 72.7 mm SL; d. Mystus tengara, Unregistered, 42.2mm SL. e= Supraethmoid, le= lateral ethmoid, f= frontal, af= anterior fontanel, pf= posterior fontanel, eb= epiphysial bar, s= sphenotic, pt= pterotic, so= supraoccipital, ex=exoccipital, op= occipital process.
FIGURE 5 in A new species of Argulus (Crustacea, Branchiura, Argulidae) from the skin of catfish, with new records of branchiurans from wild fish in the Brazilian Pantanal wetland
FIGURE 5. DETAILS Of ALLOTyPE Of Argulus chiropteroideus sp. n. fEMALE, IN VENTRAL VIEW. A–D LEGS 1 TO 4 E fRONTAL REGION F SPINES Of THE fRONTAL REGION G fIRST ANTENNAE H SEcOND ANTENNAE I SUPPORT RODS Of SUcTION cUP (fIRST MAXILLAE) J SEcOND MAXILLAE, WITH ANTERIOR AND POSTERIOR THORAcIc SPINE (EMPHASIZED ARE THE ScALES) K LAST SEGMENT Of SEcOND MAXILLAE L AbDOME M SEMEN PAPILLAE N cAUDAL RAMI IN DORSAL VIEW O MOUTH TUbE AND PREORAL STyLET P MOUTH TUbE Q MANDIbLE AND R RESPIRATORy AREA. ScALE bAR = A–D, R 2MM, O 1.5MM, L 1MM, E, G–H, J 0.5MM, K, P 0.25MM, I, M, N 0.2MM, F, Q 0.1MM
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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.