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.
677
datasets available to search
ShareScore release 0.9.0
Dataset results
677 results for “coastal waters”
Figure 10 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 10. Cassidias australiensis sp. nov. A–C, pereopods 1, 2 and 7; D, dactylus, pereopod 1; E, penial processes; F, uropod, immature; G, oostegite 2.
Figure 38 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 38. Pedinura flindersia sp. nov. All figs female paratype NMV J39721. A, dorsal view; B, lateral view; C, antennule; D, antenna.
Figure 39 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 39. Pedinura flindersia sp. nov. SEMs. Female, 'The Hotspot' reef, Flinders I., NMV J39722. A, anterior, lateral view; B, mandible; C, maxilliped, distal margin; D, pereopod 1 dactylus; E, pereopod 2, pectinate robust seta on propodus; F, uropod lateral margin; G, sensory setae, uropods.
Figure 29 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 29. Margueritta sandyi sp. nov. Female paratype. A, maxilla; B, maxillule; C, pereopod 1; D, pereopod 2; E, pereopod 7.
Figure 22 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 22. Exosphaeroma alveola sp. nov. SEMs. Female, AM P51056. A, head; B, pleon, dorsal view; C, right mandible, spine row; D, right mandible, molar; E, maxillule, lateral lobe; F, maxillule, mesial lobe; G, pereopod 1, dactylus; H, pleopod 5, exopod.
Figure 9 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 9. Cassidias australiensis sp. nov. All figs male paratype. A, maxilliped; B, maxillule, lateral lobe; C, maxillule mesial lobe; D, maxilla; E, left mandible; F, right mandible, distal part.
Figure 7 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 7. Austrasphaera springthorpei sp. nov. A–E, G, female paratype, F, H–J male paratype (AM P41124), A–E, pleopods 1–5; F, penial processes; G, uropod; H, pleopod 2, male; I, pereopod 2, male; J, pereopod 1 male.
Figure 8 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 8. Cassidias australiensis sp. nov. A–F, male holotype, G–H, male paratype, remainder as indicated. A, dorsal view; B, lateral view; C, pleon, ventral view; D, pleotelson, posterior margin, posterior view; E, frons and anterior of head in ventral view; F, frons, female; G, antennule; H, antenna.
Figure 6 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 6. Austrasphaera springthorpei sp. nov. Female paratype (AM P41124). A–C, pereopods 1, 2, and 7.
Figure 5 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 5. Austrasphaera springthorpei sp. nov. A, B, holotype, remainder female paratype (AM P41124). A, dorsal view; B, lateral view; C, antennule; D, antenna; E, maxilliped; F, left mandible.
Figure 2 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 2. Austrasphaera berentsae sp. nov. All figs female paratype (AM P41342). A, maxilliped; B, maxillule, mesial and lateral lobes; C, apex, maxillule lateral lobe; D, maxilla mesial lobe apex; E, maxilla; F, robust setae from maxilla middle lobe; G, right mandible; H, distal left mandible; I, mandible molar; J, pereopod 1; K, pereopod 1, dactylus unguis and secondary unguis.
Figure 4 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 4. Austrasphaera berentsae sp. nov. A, uropod, female paratype (AM P41342). B–D, male NMV J26391). B, male pereopod 1; C, penial process and pleonal sternite; D, pleopod 2.
Figure 1 in New genera and species of sphaeromatid isopod crustaceans from Australian marine coastal waters
Figure 1. Austrasphaera berentsae sp. nov. A, B, D, female holotype, G–I, female paratype, (AM P41342), remainder as indicated. A, lateral view; B, dorsal view; C, frons and anterior of head in ventral view; D, pleon and pleotelson, ventral view; E, head and anterior pereonites, female 3.5 mm Flinders I. (NMV J39716); F, head and anterior pereonites, male 2.8 mm paratype (AM P41342); G, antennule; H, antennule, detail of marginal setae; I, antenna.
Fig 2 in A study on some commercial fishes of Nyaw-byin coastal water, Launglone Township, Tanintharyi region, Myanmar
Fig 2(A- J): Commercial fishes: A) Albennes hians, B) Tenualosa ilisha, C) Chirocentrus dorab, D) Mugil cephalus, E) Megalaspis cordyla, F), Scomberoides tala G), Drepane punctate H), Lutjanus lunulatus I), Monodactylus argenteus J) Nibea soldado.
Figs 1−13. Ancistrum haliotis n in Two New and Two Poorly Known Species of Ancistrum (Ciliophora, Scuticociliatia, Thigmotrichida) Parasitizing Marine Molluscs from Chinese Coastal Waters of the Yellow Sea
Figs 1−13. Ancistrum haliotis n. sp. from the abalone Haliotis discus hannai Ino (1–5), Ancistrum mytili (Quennerstedt, 1867) from the blue mussel Mytilus edulis (6, after Kidder 1933) and the horse mussel Modiolus modiolus (7, after Hatzidimitriou and Berger 1977) and Ancistrum crassum Fenchel, 1965 from the purple clam Saxidomus purpuratus (Sowerby) (8–11) and from the short-necked clam Ruditapes philippinarum (12, 13, after Xu et al. 1997), from life (1, 2, 6, 8) and after protargol (3–5, 9, 10, 12, 13) and silver nitrate impregnation (7, 11). 1 – left lateral view of a representative specimen; 2, 3 – ventral view to show the oral structure; 4, 5 – left and right lateral view of the holotype specimen; 6, 7 – lateral and ventral view of A. mytili, which possesses a characteristic reniform macronucleus and a broad buccal field; 8 – left lateral view of body variants; 9–13 – lateral and ventral view of three specimens to show the ciliary pattern. CCo – caudal complex; CyP – cytoproct; M1–3 – membranelles 1–3; MA – macronucleus; MI – micronucleus; PM – paroral membrane; Sc – scutica; SK1, n – somatic kineties 1, n. Scale bars: 30 µm (4, 5 and 7, 9–13 drawn to scale).
Figs 14–25. Ancistrum acutum n in Two New and Two Poorly Known Species of Ancistrum (Ciliophora, Scuticociliatia, Thigmotrichida) Parasitizing Marine Molluscs from Chinese Coastal Waters of the Yellow Sea
Figs 14–25. Ancistrum acutum n. sp. from the surf clam Mactra veneriformis (14–17) and Ancistrum japonicum Uyemura, 1937 from the Japanese dosinia Dosinia japonica (18, 19, 21, 22) and the clam Cyclina sinensis (20, 23–25), from life (14, 15, 18–20) and after protargol (23–25) and silver nitrate impregnation (16, 17, 21, 22). 14 – left lateral view of a representative specimen; 15 – body variant and cortical granules; 16, 17 – ventral and dorsal view of the holotype specimen; 18, 19 – lateral view of living cells; 20 – lateral view of a representative specimen; 21, 22 – lateral view of same specimen; 23 – ventral ciliature; 24, 25 – lateral view of the neotype specimen. CCo – caudal complex; Cs – cytostome; CVP – contractile vacuole pore; M1–3 – membranelles 1–3; MA – macronucleus; MI – micronucleus; PM – paroral membrane; Sc – scutica; SK1, n – somatic kineties 1, n. Scale bars: 30 µm.
Figure 5 in The ecological condition of coastal waters off the Heracles Peninsula (Crimea, the Black Sea)
Figure 5. Comparison of the H/L index in the mussel M. galloprovincialis with a shell length of 30 and 50 mm from various water areas.
Figure 4 in The ecological condition of coastal waters off the Heracles Peninsula (Crimea, the Black Sea)
Figure 4. Relationship between surface water parameters and seasonal temperature changes (Twater, ºС): A - primary production, B - concentration of total suspended matter, C - period of mass of suspension, D - maximum daylight illumination
Figure 2 in The connection of the intensity of the plankton community luminescence and the age distribution of horse mackerel in the coastal waters of the south-western Crimea
Figure 2. The average monthly intensity of glow organisms 1 – in the winter (January-February); 2 – in the spring (May); 3 — in the summer (June-July) in the 2010-2015.
Figure 3 in The connection of the intensity of the plankton community luminescence and the age distribution of horse mackerel in the coastal waters of the south-western Crimea
Figure 3. Relative quantity of the age groups the Trachurus mediterraneus (1-yearlings. 2 - two-year-olds. 3 - threeyear-olds. 4 - four-year-olds. 5 - five-year-olds) in the spring-summer period in the coastal waters of the south-western Crimea.
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.