Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
2,258
datasets available to search
ShareScore release 0.9.0
Dataset results
2,258 results for “Catfish”
FIGURES 34–37 in Towards a robust systematic baseline of Neotropical fish tapeworms (Cestoda: Proteocephalidae): amended diagnoses of two genera from the redtail catfish, Phractocephalus hemioliopterus
FIGURES 34–37. LINe DRAWINgS Of Zygobothrium megacephalum DIeSINg, 1850 fROM Phractocephalus hemioliopterus. 34, 35. CROSS-SeCTIONS AT THe LeVeL Of THe ANTeRIOR AND POSTeRIOR PART Of THe TeRMINAL geNITALIA, ReSPeCTIVeLY. 36. TeRMINAL geNITALIA, VeNTRAL VIeW (MHNG-PLAT-18317). NOTe THe SMALL SPINeS (SPINITRICHeS) ON THe CIRRUS. 37. EggS IN DISTILLeD WATeR (MHNG- PLAT-85239). Abbreviations: AC—ARMeD CIRRUS; CC—CHROMOPHILIC CeLLS; DP—DIgITATe PROjeCTIONS; DO—DORSAL OSMORegULATORY CANAL; eD—ejACULATORY DUCT; eM—eMbRYOPHORe; LA—LACINIATIONS; LM—INTeRNAL LONgITUDINAL MUSCULATURe; Oe—OUTeR eNVeLOPe; ON—ONCOSPHeRe; V—VACUOLe; VA—VAS DefeReNS; VI—VITeLLINe fOLLICLeS; VO—VeNTRAL OSMORegULATORY CANAL; VS—VAgINAL SPHINCTeR.
FIGURE 4 in Exostoma sentiyonoae, a new catfish (Teleostei: Sisoridae) from Nagaland, Northeastern, India
FIGURE 4. Dzuleke River in Nagaland, a tributary of the Barak River, type locality of Exostoma sentiyonoae.
FIGURE 2 in Exostoma sentiyonoae, a new catfish (Teleostei: Sisoridae) from Nagaland, Northeastern, India
FIGURE 2. Exostoma sentiyonoae, holotype, ZSI FF 9871, 75.8 mm SL. Dorsal and ventral views of head.
FIGURE 1 in Exostoma sentiyonoae, a new catfish (Teleostei: Sisoridae) from Nagaland, Northeastern, India
FIGURE 1. Exostoma sentiyonoae, holotype, ZSI FF 9871, 75.8 mm SL. Dorsal, lateral, and ventral views.
FIGURE 6. Panaqolus pantostiktos, MEPN 19495, 163.4 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 6. Panaqolus pantostiktos, MEPN 19495, 163.4 mm SL, holotype. Scale bars = 1 cm. Photos by F.P-R.
FIGURE 2 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 2. Close up of mouth and buccal disk for: a) Panaqolus orcesi, MEPN 19492, 180.6 mm SL, holotype; and b) P. pantostiktos, MEPN 19495, 163.4 mm SL, holotype. Photos by F.P-R.
FIGURE 5 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 5. Comparisons of diagnostic differences versus SL in: a) mid-lateral dot sizes (based on averages for 10 of the largest dots below dorsal fin), and b) pectoral-fin dot counts (based on average of counts for both pectoral fins of each specimen). Probability that allometric relationships for the two species are the same is indicated in each panel based on analysis of covariance.
FIGURE 4 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 4. Comparisons of diagnostic relationships between the two new Panaqolus spp. for selected morphometric variables. Probability that allometric relationships for the two species are the same is indicated in each panel based on analysis of covariance.
FIGURE 3 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 3. Dorsal view of color patterns in specimens soon after capture for: a) Panaqolus orcesi, with cream-colored dots, and b) Panaqolus pantostiktos, with yellow- or gold-colored dots. Photos by R.B-S.
FIGURE 7 in Two new species of the armored catfish genus Panaqolus (Siluriformes, Loricariidae) from the Ecuadorian Amazon
FIGURE 7. Map of Ecuador and adjacent areas showing capture localities for Panaqolus orcesi red circles and red star (type locality), and for Panaqolus pantostiktos red rhombus (type locality).
The effects of disinfectants on the gill and skin microbiome of striped catfish (Pangasianodon hypophthalmus)
<p>Overall classified reads of study.</p>
Fig 3 in Amblyceps waikhomi, a New Species of Catfish (Siluriformes: Amblycipitidae) from the Brahmaputra Drainage of Arunachal Pradesh, India
Fig 3. Type locality of Amblyceps waikhomi, Nongkon stream in Namsai district, Arunachal Pradesh. doi:10.1371/journal.pone.0147283.g003
Fig 2 in Amblyceps waikhomi, a New Species of Catfish (Siluriformes: Amblycipitidae) from the Brahmaputra Drainage of Arunachal Pradesh, India
Fig 2. Map showing type locality of Amblyceps waikhomi (star marked). doi:10.1371/journal.pone.0147283.g002
Fig 4. Caudal fin. a. A in Amblyceps waikhomi, a New Species of Catfish (Siluriformes: Amblycipitidae) from the Brahmaputra Drainage of Arunachal Pradesh, India
Fig 4. Caudal fin. a. A. mangois (RGUMF unregistered, 45.2 mm SL), b. A. arunachalensis (RGUMF 117, 85.1 mm SL), and c. A. waikhomi (RGUMF 269, 40.2 mm SL). (Parphypural may be separated from
Fig 1 in Amblyceps waikhomi, a New Species of Catfish (Siluriformes: Amblycipitidae) from the Brahmaputra Drainage of Arunachal Pradesh, India
Fig 1. Amblyceps waikhomi, holotype, ZSI/APRC/P-1125, 42.9 mm SL: a. lateral b. dorsal c. ventral views. doi:10.1371/journal.pone.0147283.g001
FIGURE 5 in Exostoma ericinum, a new glyptosternine catfish from southwestern China (Teleostei: Siluriformes: Sisoridae)
FIGURE 5. Dorsal views of heads of: a. Exostoma ericinum, KIZ 2006013041, holotype, 88.2 mm SL; b. E. chaudhurii, CMK 26291, 62.2 mm SL; c. E. stuarti, CMK 25604, 42.4 mm SL; d. E. vinciguerrae, CMK 26330, 62.9 mm SL. Images not to scale.
FIGURE 6 in Exostoma ericinum, a new glyptosternine catfish from southwestern China (Teleostei: Siluriformes: Sisoridae)
FIGURE 6. Ventral views showing mouths and oral structures in: a. Exostoma ericinum, CAS 226058, paratype, 82.6 mm SL; b. E. sectile, CMK 26439, paratype, 63.8 mm SL; c. E. vinciguerrae, CMK 26330, 62.9 mm SL. Images not to scale.
FIGURE 4 in Exostoma ericinum, a new glyptosternine catfish from southwestern China (Teleostei: Siluriformes: Sisoridae)
FIGURE 4. Lateral views of pectoral fins of: a. Exostoma ericinum, CAS 226058, paratype, 82.6 mm SL; b. E. sectile, MHNG 2767.061, holotype, 78.2 mm SL (condition in other Exostoma species from the Irrawaddy River drainage similar). Tubercles are visible as small, pale dots. Images not to scale.
FIGURE 3 in Exostoma ericinum, a new glyptosternine catfish from southwestern China (Teleostei: Siluriformes: Sisoridae)
FIGURE 3. Map of Irrawaddy River drainage showing collection localities of Exostoma ericinum (solid circle represents more than one locality).
FIGURE 2 in Exostoma ericinum, a new glyptosternine catfish from southwestern China (Teleostei: Siluriformes: Sisoridae)
FIGURE 2. Exostoma ericinum, paratype, ZRC 56672, 97.0 mm SL. Lateral view showing coloration in life. Photograph courtesy of H Zhou.
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)
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.