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.
683
datasets available to search
ShareScore release 0.9.0
Dataset results
683 results for “Japan Sea”
Water Body Checklists 2019: Sea of Japan Species List
Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Sea of Japan using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.
Water Body Checklists: Sea of Japan Species List
Species checklists created using effechecka and modified polygons from IHO. The polygons were reduced in resolution.<p></p>List of species collected from the Sea of Japan using effechecka and a modified polygon from the International Hydrographic Association. A filter was applied (based on data from WoRMS) to remove all non-marine taxa.
Fig. 1 in A new species of the genus Liljeborgia Spence Bate, 1862 (Crustacea: Amphipoda: Liljeborgiidae) associated with the burrows of the spoon worm Urechis unicinctus in the Sea of Japan
Fig. 1. Habitus of live female specimen of Liljeborgia associata sp. nov. from Vostok Bay of the Sea of Japan with geographical indication of the collection sites in the Peter the Great Bay and Posjeta Bay of the Sea of Japan.
Fig. 4 in A new species of the genus Liljeborgia Spence Bate, 1862 (Crustacea: Amphipoda: Liljeborgiidae) associated with the burrows of the spoon worm Urechis unicinctus in the Sea of Japan
Fig. 4. Liljeborgia associata sp. nov., female (LEMMI) from Vostok Bay of the Sea of Japan. a. Pereopod 3. b. Pereopod 4. c. Pereopod 5. d. Distal segments of P5. e. Pereopod 6. f. Distal segments of P6. g. Pereopod 7.
Fig. 3 in A new species of the genus Liljeborgia Spence Bate, 1862 (Crustacea: Amphipoda: Liljeborgiidae) associated with the burrows of the spoon worm Urechis unicinctus in the Sea of Japan
Fig. 3. Liljeborgia associata sp. nov., female (LEMMI) from Vostok Bay of the Sea of Japan. a. Gnathopod 1. b. Chela of Gn1. c. Gnathopod 2. d. Chela of Gn2.
Fig. 5 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 5. Dendrogaster tobasuii sp. nov., allotype male, total length ca. 6 mm, NSMT-Cr 26861, removed from the main branch of holotype female. A, right lateral view (arrowhead indicating point of breakage of isolated left posterior process); B, isolated left posterior process; C, main body, left lateral view (long setae of thoracic limbs and furca omitted); D, right antennule, medial view; E, left first thoracic limb (thoracopod 2), lateral view. Abbreviations: ab, abdominal segments; bs, basis; cg, claw guard; cl, terminal claw; cx, coxa; en, endopod; ex, exopod; fr, furcal rami; fs, fusion seam; I–IV, segment numbers; mx, second maxillae; sp, rudimentary proximal sensory process; th, thoracomeres.
Fig. 7 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 7. Dendrogaster nagasakimaruae sp. nov., A–D, holotype female, mantle size 22.0 mm, NSMT-Cr 26878, removed from coelomic cavity of Nymphaster euryplax (R 60.0 mm, r 14.6 mm), East China Sea southeast of Danjo Islands, Nagasaki Prefecture (31°51.73′N, 128°29.13′E), 247–257 m depth. A, whole animal, dorsal view; B, linear scheme to indicate a pattern of mantle branching; C, left antennule, medial view; D, second maxillae, posterior view. E–F, allotype male, total length 4.5 mm, NSMT-Cr 26879, removed from the main branch of holotype female. E, whole animal, right lateral view; F, abdomen. Abbreviations: b1a, anterior primary branches; b2a, anterior secondary branches; b3a, anterior tertiary branches; b1p, posterior primary branches; b2p, posterior secondary branches; bl, basal lobe; cg, claw guard; cl, terminal claw; fr, furcal rami; fs, fusion seam; I–IV, segment numbers; mb, main branches; mp, middle piece; pp, posterior processes; sp, rudimentary proximal sensory process.
Fig. 4 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 4. Dendrogaster tobasuii sp. nov., holotype female, mantle size 59.9 mm, NSMT-Cr 26860, removed from coelomic cavity of Mediaster arcuatus (unmeasured), Kumano-nada Sea off Owase, Mie Prefecture, Pacific coast of central Japan, about 300 m depth. A, whole animal, dorsal view; B, linear scheme to indicate a pattern of mantle branching; C, left antennule, medial view; D, fourth segment of right antennule, lateral view; E, second maxillae. Abbreviations: b1a, anterior primary branches; b2a, anterior secondary branches; b3a, anterior tertiary branches; b1p, posterior primary branches; cg, claw guard; cl, terminal claw; fs, fusion seam; I–IV, segment numbers; mb, main branches; mp, middle piece; sp, rudimentary proximal sensory process.
Fig. 3 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 3. Dendrogaster komatsuae sp. nov., nauplius, carapace length 0.87 mm, from holotype female. A, whole animal, ventral view; B, left portion of body, ventral view. Abbreviations: a1, antennule; a2, antenna; md, mandible. Scale bar=0.3 mm.
Fig. 2 in Three New Species of Dendrogaster (Crustacea: Ascothoracida) Infecting Goniasterid Sea-Stars (Echinodermata: Asteroidea) from Japan
Fig. 2. Dendrogaster komatsuae sp. nov., holotype female, mantle size 46.3 mm, NSMT-Cr 26858, removed from coelomic cavity of Lithosoma japonica (R 50.0 mm, r 25.3 mm), TAMBL-EC10, Kumano-nada Sea off Owase, Mie Prefecture, Pacific coast of central Japan, about 300 m depth. A, whole animal, dorsal view; B, linear scheme to indicate a pattern of mantle branching; C, left anterior branches, unfurled; D, left antennule, medial view; E, third and fourth segments of right antennule (terminal claw missing), lateral view; F, second maxillae. Abbreviations: b1a, anterior primary branches; b2a, anterior secondary branches; bp, posterior branches; b1p, posterior primary branches; cg, claw guard; cl, terminal claw; eb, extra branch; fs, fusion seam; I–IV, segment numbers; mb, main branches; mp, middle piece; sp, rudimentary proximal sensory process; tb, terminal branch.
Figure 3 in Harpacticoida (Copepoda) of the northern East Sea (the Sea of Japan) and the southern Sea of Okhotsk: diversity, taxocenes, and biogeographical aspects
Figure 3. Biogeographical structure of the faunas from the three main species complexes in the East Sea and the southern part of the Sea of Okhotsk. Relative species abundances with different distribution ranges are presented.
Figure 7 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 7. Recent geographical occurrences of Loxocorniculum mutsuense Ishizaki, 1971, based on data from previous studies.
Figure 3 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 3. Distributional pattern of pore systems in adult left valve of Loxoconcha kamiyai sp. nov. Position of one missing pore system of this species is determined by comparison with the distributional pattern of pore systems of Loxocorniculum mutsuense Ishizaki, 1971 (Ishii et al., 2005).
Figure 5 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 5. Results of DDP analysis for 17 loxoconchid species and Loxoconcha kamiyai sp. nov., modified from Ishii et al. (2005). Numbers indicate total numbers of pore systems for each lineage and stage. Trees drawn by hand.
Figure 4 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 4. Patterns of normal pore systems below the eye tubercle by PBE analysis of Ishii et al. (2005) for the adult left valve of Loxoconcha kamiyai sp. nov., based on Figure 3. Pore systems with italic letters (v–z) are the same as those of Ishii et al. (2005), respectively. etb: eye tubercle.
Figure 1 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 1. Geographical and geological occurrences of Loxoconcha kamiyai sp. nov. based on original data, except for data from the Omma Formation cited from Ozawa (1996). Fm: Formation.
Figure 9 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 9. Comparison of lateral view (adult female, A-1 juvenile, adult male) for right valve of Loxocorniculum mutsuense Ishizaki, 1971. A, external lateral view. B, internal lateral view. C, close-up view of anterior hingement element. Upper row: adult female; middle row: A-1 juvenile; lower row: adult male. All specimens from the early Pleistocene Kaidate Formation, central Japan.
Figure 8 in Taxonomy and sexual dimorphism of a new species of Loxoconcha (Podocopida: Ostracoda) from the Pleistocene of the Japan Sea
Figure 8. Comparison of lateral view (adult female, A-1 juvenile, adult male) of inner right valve of Loxoconcha kamiyai sp. nov. A, lateral view from inside. B, close-up view of anterior hingement element. C, sketch of anterior hingement element (= B). Upper row: adult female; middle row: A-1 juvenile; lower row: adult male. All specimens from the early Pleistocene Kaidate Formation, central Japan.
Fig. 8 in Synonymy of the Scale Worm Hesperonoe urechis with Arctonoella sinagawaensis (Annelida: Polynoidae), Newly Recorded from the Seto Inland Sea, Western Japan, with Remarks on Symbiosis with the Spoon Worm Urechis unicinctus (Annelida: Thalassematidae)
Fig. 8. Maximum-likelihood phylogenetic tree based on COI, 16S, 18S, and 28S sequences. Numbers indicate nodal bootstrap support values (> 50%). Bold: newly obtained sequence. Pale shading: Polynoinae clade. Dark shading: Arctonoella-Hesperonoe clade.
Fig. 5 in Synonymy of the Scale Worm Hesperonoe urechis with Arctonoella sinagawaensis (Annelida: Polynoidae), Newly Recorded from the Seto Inland Sea, Western Japan, with Remarks on Symbiosis with the Spoon Worm Urechis unicinctus (Annelida: Thalassematidae)
Fig. 5. Arctonoella sinagawaensis, right parapodia of chaetiger 14, preserved specimens (A, B: NSMT-Pol 113479; C: NSMT-Pol 113481). A, Anterior view; B, posterior view; C, posterior view. Abbreviations: dc, dorsal cirrus; neu, neuropodium; not, notopodium; pos, postchaetal lobe of neuropodium; pre, prechaetal acicular lobe of neuropodium; vc, ventral cirrus; 1, superior notochaetae; 2, inferior notochaetae; 3, supra-acicular neurochaetae; 4, infra-acicular neurochaetae. Scale bars: A, B, 1 mm; C, 0.1 mm.
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.