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.
103
datasets available to search
ShareScore release 0.9.0
Dataset results
103 results for “teleost fish”
Fig. 9. Tortonian fish otoliths from northern Italy. A in Tortonian teleost otoliths from northern Italy: taxonomic synthesis and stratigraphic significance
Fig. 9. Tortonian fish otoliths from northern Italy. A. Echiodon heinzelini Huyghebaert & Nolf, 1979, Torrente Stirone (IRSNB P 9787). B. Hoplobrotula aff. armata (Temminck & Schlegel, 1846), Sant'Alosio (IRSNB P 9788). C. Neobythites auriculatus sp. nov., Sant'Alosio (IRSNB P 9688 (holotype). D–E. Carapus acus (Brünnich, 1768); D. Torrente Stirone, E. Sant'Agata Fossili (IRSNB P 9789–P 9790). F–G. Bythitidae indet., Torrente Stirone (IRSNB P 9791–P 9792). H. Grammonus bassolii (Nolf, 1980), Torrente Stirone (IRSNB P 9793). I. Chaunax lobatus (Bassoli, 1906), Montegibbio (IRSNB P 9794). J–L. Scopelogadus sp.; J. Alba, Tanaro (5 m), K. Stazzano, L. Alba, Tanaro (50 m) (IRSNB P 9795–P 9797). M. Mugilidae indet., Sant'Alosio (IRSNB P 9798). N. Phycis musicki Cohen & Lavenberg, 1984, Torrente Stirone (IRSNB P 9799). O. Melamphaes sp., Alba, Tanaro (50 m) (IRSNB P 9802). P. Micromesistius planatus (Bassoli & Schubert, 1906), Montegibbio (IRSNB P 9803). Q–R. "Scorpaena" zibinica (Bassoli, 1909), Torrente Stirone (IRSNB P 9800–P 9801). 1 = ventral view; 2 = inner view; 3 = anterior view. Scale bars = 1 mm.
Fig. 5. Tortonian fish otoliths from northern Italy. A in Tortonian teleost otoliths from northern Italy: taxonomic synthesis and stratigraphic significance
Fig. 5. Tortonian fish otoliths from northern Italy. A. Diaphus holti Tåning, 1918, Mondovi, Madonna della Neve (IRSNB P 9732). B. Diaphus metopoclampoides Steurbaut, 1983, Sant'Alosio (IRSNB P 9733). C–E. Diaphus regani Tåning, 1932, Montegibbio (IRSNB P 9734–P 9736). F–G. Diaphus pedemontanus (Robba, 1970), Sant'Alosio (IRSNB P 9737–P 9738). H. Diaphus aff. rafinesquii (Cocco, 1838), Mondovi, Madonna della Neve (IRSNB P 9739). I. Diaphus aff. splendidus (Brauer, 1904), Costa Vescovato (IRSNB P 9740). J. Diaphus cahuzaci Steurbaut, 1979, Mondovi, Madonna della Neve (IRSNB P 9741). K. Lampadena aff. dea Fraser-Brunner, 1949, Torrente Stirone (IRSNB P 9742). L. Lampadena aff. speculigeroides Brzobohatý & Nolf, 1996, Stazzano (IRSNB P 9743). M. Hygophum hygomii (Lütken, 1892), Mondovi, Madonna della Neve (IRSNB P 9744). N–O. Lampadena gracilis (Schubert, 1912); N. Alba, Tanaro (50 m), O. Mondovi, Madonna della Neve (IRSNB P 9745–P 9746). P–Q. Lobianchia gemellarii (Cocco, 1838), Sant'Alosio (IRSNB P 9747–P 9748). R. Hygophum derthonensis (Anfossi & Mosna, 1969), Torrente Stirone (IRSNB P 9749). S–T. Lampanyctus latesulcatus Nolf & Steurbaut, 1983, Sant'Agata Fossili (IRSNB P 9750–P 9751). U. Merluccius cf. merluccius (Linnaeus, 1758), Sant'Agata Fossili (IRSNB P 9752). V. Lobianchia dofleini (Zugmayer, 1911), Costa Vescovato (IRSNB P 9753). 1 = ventral view; 2 = inner view. Scale bars = 1 mm.
Fig. 8. Tortonian fish otoliths from northern Italy. A in Tortonian teleost otoliths from northern Italy: taxonomic synthesis and stratigraphic significance
Fig. 8. Tortonian fish otoliths from northern Italy. A. Coelorinchus caelorhincus (Risso, 1810), Montegibbio (IRSNB P 9772). B. Coryphaenoides contortus (Bassoli, 1906), Sant'Alosio (IRSNB P 9773). C–D. "Merluccius" rattazzii sp. nov., Sant'Alosio (IRSNB P 9686 (holotype)–P 9687). E–F. Coryphaenoides biobtusus sp. nov., Alba, Tanaro (5 m) (IRSNB P 9684 (holotype)–P 9685). G–H. Nezumia aff. sclerorhynchus (Valenciennes, 1838), Alba, Tanaro (5 m) (IRSNB P 9774–P 9775). I–J. Moridae indet., Sant'Agata Fossili (IRSNB P 9776–P 9777). K. Nezumia ornata (Bassoli, 1906), Montegibbio (IRSNB P 9778). L–M. Coelorinchus robustus (Robba, 1970); L. Stazzano, M. Sant'Alosio (IRSNB P 9779–P 9780). N. Gadiculus labiatus (Schubert, 1905), Torrente Stirone (IRSNB P 9781). O–P. Melanonus paralyconus Schwarzhans, 1986, Mondovi, Madonna della Neve (IRSNB P 9782– P 9783). Q–R. Melanonus triangulus (Robba, 1970), Costa Vescovato (IRSNB P 9784–P 9785). S. Gadiculus argenteus Guichenot, 1850, Torrente Stirone (IRSNB P 9786). 1 = ventral view; 2 = inner view. Scale bars = 1 mm.
Fig. 7. Tortonian fish otoliths from northern Italy. A in Tortonian teleost otoliths from northern Italy: taxonomic synthesis and stratigraphic significance
Fig. 7. Tortonian fish otoliths from northern Italy. A. Scopelopsis pliocenicus (Anfossi & Mosna, 1976), Sant'Agata Fossili (IRSNB P 9754). B–C. Myctophum coppa Girone, Nolf & Cavallo, 2010, Sant'Agata Fossili (IRSNB P 9755–P 9756). D. Myctophum fitchi (Schwarzhans, 1979), Torrente Stirone (IRSNB P 9757). E–F. Notoscopelus bolini Nafpaktitis, 1975, Torrente Stirone (IRSNB P 9760– P 9761). G–H. Myctophum punctatum Rafinesque,1810, Sant'Agata Fossili (IRSNB P 9758–P 9759). I. Notoscopelus aff. caudispinosus (Johnson, 1863), Mondovi, Madonna della Neve (IRSNB P 9764). J–K. Notoscopelus elongatus (Costa, 1844), Costa Vescovato (IRSNB P 9762–P 9763). L. Notoscopelus resplendens (Richardson, 1845), Gallo D'Alba (IRSNB P 9765). M–O. Bregmaceros sp., Sant'Agata Fossili (IRSNB P 9766–P 9768). P. Bathygadus novus (Bassoli, 1906), Sant'Agata Fossili (IRSNB P 9769). Q. Coelorinchus arthaberi (Schubert, 1905), Montegibbio (IRSNB P 9770). R. Trachyrincus scabrus (Rafinesque, 1810), Montegibbio (IRSNB P 9771). 1 = ventral view; 2 = inner view. Scale bars = 1 mm.
Data from: Dynamics of diet-egg transfer of fatty acids in the teleost fish, red drum (Sciaenops ocellatus)
<p>Eggs of marine organisms are increasingly being recognized as important components of marine food webs. The degree to which egg fatty acid profiles reflect maternal diet fatty acid profiles, and therefore the value of fatty acids in eggs as trophic biomarkers, depends on the species' reproductive strategy and the extent of modification of ingested fatty acids. We measured the dynamics of transfer of recently ingested fatty acids to spawned eggs in a batch-spawning teleost, red drum (<em>Sciaenops ocellatus</em>). Results of 21 dietshift experiments, from which the fatty acid profiles of the diets and eggs were compared, showed that 15 of 27 fatty acids measured (one saturated, two monounsaturated and 12 polyunsaturated fatty acids) in eggs were correlated with their levels in the recent diet, and the rate of incorporation into eggs was proportional to the magnitude of the diet shift. Large shifts in diet might occur naturally during spawningmigrations or when prey communities vary over time. Results of this study indicate that fatty acids in red drum eggs can be useful for studying adult diet and exploring trophic linkages in marine systems.</p> <p>This article is part of the theme issue 'The next horizons for lipids as 'trophic biomarkers': evidence and significance of consumer modification of dietary fatty acids'.</p>
Estimates of molecular convergence reveal genes with intermediate pleiotropy underlying adaptive variation across teleost fish
<p>This dataset comprises raw sequence data, output of analyses, code used to reproduce the study, figures, and supplementary materials.</p> <p>Code and input files are in Datasets.zip</p> <p>Use the README to navigate this folder. </p> <p>Data to reproduce the CSUBST analysis are in the .tar.gz folder.</p> <p> </p> <p>For more information please check: </p> <p>https://github.com/agneeshbarua/Teleost_convergence</p>
Fig. 4 in Helminth Diversity In Teleost Fishes From The Area Of The Ukrainian Antarctic Station "Akademik Vernadsky", Argentine Islands, West Antarctica
Fig. 4. Cluster analysis of the similarity between the helminth communities in five teleost fish species off the area of the UAS "Akademik Vernadsky", Argentine Islands, and West Antarctica.
Fig. 3 in Helminth Diversity In Teleost Fishes From The Area Of The Ukrainian Antarctic Station "Akademik Vernadsky", Argentine Islands, West Antarctica
Fig. 3. Proportion (in %) of helminth species parasitize five Antarctic teleost fishes off the area of the UAS "Akademik Vernadsky" on larval and adult stages.
Fig. 2 in Helminth Diversity In Teleost Fishes From The Area Of The Ukrainian Antarctic Station "Akademik Vernadsky", Argentine Islands, West Antarctica
Fig. 2. Intensity of teleost fish infection off the area of the UAS "Akademik Vernadsky" by five parasite taxa (proportion of different parasite taxa is in %).
Fig. 1 in Helminth Diversity In Teleost Fishes From The Area Of The Ukrainian Antarctic Station "Akademik Vernadsky", Argentine Islands, West Antarctica
Fig. 1. Proportion (%) of five parasite taxa found in teleost fish off the area of the UAS "Akademik Vernadsky", Argentine Islands, West Antarctica.
Fig. 2 in Helminth Diversity In Teleost Fishes From The South Orkney Islands Region, West Antarctica
Fig. 2. Proportion (%) of helminth species parasitizing three teleost fishes from the South Orkney Islands area, West Antarctica on larval and adult stages.
Fig. 1 in Helminth Diversity In Teleost Fishes From The South Orkney Islands Region, West Antarctica
Fig. 1. Proportion (%) of four parasite taxa in three fish species from the South Orkney Islands area, West Antarctica.
Figures 2–7 in Diversity of trypanorhynch metacestodes in teleost fishes from coral reefs off eastern Australia and New Caledonia
Figures 2–7. Metacestodes of trypanorhynch cestodes from teleost fishes. 2. Viable plerocerci of Callitetrarhynchus gracilis in the body cavity of Scomberomorus commerson. 3. Melanised trypanorhynch plerocerci in the body cavity of Epinephelus sp. 4. Melanised and contracted cysts of trypanorhynch metacestodes in the body cavity of Cephalopholis miniata; no viable plerocerci were recovered from these cysts. 5. Plerocerci of Pseudogilquinia spp. (arrows) around the oesophagus of Lethrinus nebulosus. 6. Merocerci of Molicola horridus in the liver of Diodon hystrix. 7. Plerocerci of Grillotiella exile in the gill arches of Scomberomorus commerson (histological section).
Figures 8–11. Tentacularioid metacestodes incompletely identified. 8 in Diversity of trypanorhynch metacestodes in teleost fishes from coral reefs off eastern Australia and New Caledonia
Figures 8–11. Tentacularioid metacestodes incompletely identified. 8. Nybelinia sp. A from Herklotsichthys quadrimaculatus (Rüppell, 1937). Scolex, basal and metabasal armature, hook profiles. Scale-bars: scolex and tentacle, 0.1 mm; hooks, 0.01 mm. 9. Nybelinia sp. B from Parupeneus multifasciatus (Quoy & Gaimard, 1825). Scolex, basal and metabasal armature, hook profiles. Scale-bars: scolex and tentacle, 0.1 mm; hooks, 0.01 mm. 10. Heteronybelinia sp. C from Sufflamen fraenatus (Latreille, 1804). Scolex, bothrial metabasal armature and antibothrial metabasal armature. Scale-bars: scolex 0.1 mm; hooks 0.01 mm. 11. Nybelinia basimegacantha Carvajal, Campbell & Cornford, 1976, specimen from Neoniphon sammara (Forsskål, 1775). Scolex, basal and metabasal armature. Scale-bars: scolex 0.1 mm; tentacle 0.01 mm.
FIGURE 6 in The deep sea teleost fish fauna of the Brazilian North Coast
FIGURE 6 | Species of the order Lophiiformes, family Lophiidae, A. Sladenia shaefersi, photograph by PRODEMERSAL, family Chaunacidae, B. Chaunax suttkusi, photograph by Revizee Score-North, and family Ogcocephalidae, C. Dibranchus atlanticus, photograph by Revizee Score-North.
FIGURE 1 in The deep sea teleost fish fauna of the Brazilian North Coast
FIGURE 1 | Brazilian North coast, shaded in grey, with The Great Amazon Reef System, as defined by Moura et al. (2016), shaded in red and collection locations shaded in black (modified from resources and species with potential for exploitation on the continental shelf and slope (Lucena, Asano-Filho, 2006). A. collection locations of Program REVIZEE Score-North, B. collection locations of Program PRODEMERSAL, and C. collection locations of Program PROTUNA.
FIGURE 4 in The deep sea teleost fish fauna of the Brazilian North Coast
FIGURE 4 | Species of the order Gadiformes, family Moridae, A. Physiculus kaupi, photograph by Revizee Score-North, order Trachichthyiformes, family Trachichthyidae, B. Gephyroberyx darwinii, photograph by PRODEMERSAL, order Pleuronectiformes, family Bothidae, C. Chascanopsetta lugubris, photograph by Revizee Score-North, order Callionymiformes, family Callionymidae, D. Synchiropus agassizii, photograph by Revizee Score-North, order Scombriformes, family Gempylidae E. Gempylus serpens, photograph by PROTUNA, F. Lepidocybium flavobrunneum, photograph by PROTUNA, G. Neoepinnula americana, photograph by PRODEMERSAL, H. Ruvettus pretiosus, photograph by PRODEMERSAL, family Ariommatidae, I. Ariomma bondi, photograph by Revizee Score-North, J. Ariomma melana, photograph by PRODEMERSAL, order Perciformes, family Epigonidae, K. Epigonus pandionis, photograph by CEPNOR, and family Serranidae, L. Anthias asperilinguis, photograph by PRODEMERSAL, M. Anthias nicholsi, photograph by PRODEMERSAL.
FIGURE 5 in The deep sea teleost fish fauna of the Brazilian North Coast
FIGURE 5 | Species of the order Perciformes, family Bramidae, A. Brama brama, photograph by PRODEMERSAL, family Priacanthidae, B. Cookeolus japonicus, photograph by PRODEMERSAL, family Lutjanidae, C. Etelis oculatus, photograph by PRODEMERSAL, order Scorpaeniformes, family Scorpaenidae, D. Pontinus rathbuni, photograph by Revizee Score-North, E. Setarches guentheri, photograph by PRODEMERSAL, family Triglidae, F. Bellator brachychir, photograph by Revizee Score-North, G. Prionotus stearnsi, photograph by Revizee Score-North, family Peristediidae, H. Peristedion sp., photograph by Revizee Score-North, order Caproiformes, family Caproidae, I. Antigonia capros, photograph by PRODEMERSAL, J. Antigonia combatia, photograph by PRODEMERSAL, and order Lophiiformes, family Lophiidae, K. Lophius gastrophysus, photograph by PRODEMERSAL.
Figure 2 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)
Figure 2. ‑ First records of teleost fishes from the Cape Verde Islands. A: Gnathophis mystax, SL 365 mm, MMF39446; B: Nezumia africana, PAL 65.2 mm, MMF43121; C: Nezumia duodecim, PAL 72.8 mm, MMF39286; D: Ectreposebastes imus, SL 91 mm, MMF48816; E: Paraliparis sp., SL 251 mm, TFMC‑VP/01377; F: Lappanella fasciata, SL 140 mm, MMF42284. Scale bars = 20 mm.
Figure 1 in New and rare records of teleost fishes from the Cape Verde Islands (eastern-central Atlantic Ocean)
Figure 1. ‑ Collection locations for the first records of teleost fishes from the Cape Verde Islands: (Ì) 1: Gnathophis mystax; 2: Nezumia africana; 3: Nezumia duodecim; 4: Ectreposebastes imus; 5: Paraliparis sp.; 6: Lappanella fasciata.
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.