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.
1,661
datasets available to search
ShareScore release 0.9.0
Dataset results
1,661 results for “China Seas”
Figure 3 in A new species of the genus Ethmolaimus de Man, 1880 (Nematoda, Ethmolaimidae) from intertidal zone of the Yellow Sea, China
Figure 3. Ethmolaimus multispiralis sp. nov. A. Lateral view of entire female; B. Anterior end of female, showing amphidial fovea (arrow) and cuticle punctation; C. Pharyngeal region of female, showing buccal cavity, anterior and posterior pharyngeal bulbs, and excretory system (arrows). Scale bars: A = 50 µm; B = 10 µm; C = 20 µm.
Fig. 3 in A new species of the deep-sea porter crab genus Gordonopsis Guinot & Richer de Forges, 1995 (Crustacea, Decapoda, Brachyura, Homolidae) from the South China Sea
Fig. 3. Gordonopsis mazupo, new species, holotype male (33.4 × 24.3 mm) (SY353B6), South China Sea. A, lateral view of cephalothorax; B, left third maxilliped; C, frontal view of cephalothorax; D, ventral view showing buccal cavity, epistome, antennae and antennules; E, dorsal view of carpus of left cheliped; F, dorsal view of carpus of right cheliped; G, outer view of right chela; H, outer view of right chela; I, inner view of right chela.
Fig. 5 in A new species of the deep-sea porter crab genus Gordonopsis Guinot & Richer de Forges, 1995 (Crustacea, Decapoda, Brachyura, Homolidae) from the South China Sea
Fig. 5. Gordonopsis mazupo, new species, holotype male (33.4 × 24.3 mm) (SY353B6), South China Sea. A, left P2–P4 coxae and basisischia (denuded); B, right P2–P4 coxae (denuded); C, sternopleonal cavity with right G1 and G2 in situ; D, G, left G1 (ventral view); E, H, left G1 (dorsal view); F, I, left G2 (ventral view). G–I, drawn to same scale. Scale bars = 5 mm.
Fig. 1 in A new species of the deep-sea porter crab genus Gordonopsis Guinot & Richer de Forges, 1995 (Crustacea, Decapoda, Brachyura, Homolidae) from the South China Sea
Fig. 1. Gordonopsis mazupo, new species, holotype male (33.4 × 24.3 mm) (SY353B6), South China Sea. Colour in life. Scale bars = 10.0 mm. Photographs by Yadong Zhou.
Fig. 2 in A new species of the deep-sea porter crab genus Gordonopsis Guinot & Richer de Forges, 1995 (Crustacea, Decapoda, Brachyura, Homolidae) from the South China Sea
Fig. 2. Gordonopsis mazupo, new species, holotype male (33.4 × 24.3 mm) (SY353B6), South China Sea. A, overall habitus (legs detached); B, dorsal view of carapace; C, dorso-frontal view of carapace.
Fig. 4 in A new species of the deep-sea porter crab genus Gordonopsis Guinot & Richer de Forges, 1995 (Crustacea, Decapoda, Brachyura, Homolidae) from the South China Sea
Fig. 4. Gordonopsis mazupo, new species, holotype male (33.4 × 24.3 mm) (SY353B6), South China Sea. A, dorsal view of carapace showing relative P5 length; B, ventral view of cephalothorax showing pleon; C–F, right P2–P5, respectively (all to same scale); G, right P5 pseudochela; H, left P5 pseudochela; I, proximal part of right P2 merus (lateral view); J, proximal part of right P3 merus (lateral view); K, proximal part of right P4 merus (lateral view); L, proximal part of right P4 merus (view from flexor margin showing median spine on lateral surface).
Figure 4. Diagrammaticfigureofajuvenileof Zenopsis stabilispinosa, AMS I.31147-002 in A new species of Zenopsis (Zeiformes: Zeidae) from the South China Sea, East China Sea and off Western Australia
Figure 4. Diagrammaticfigureofajuvenileof Zenopsis stabilispinosa, AMS I.31147-002 (80.4 mm SL), paratype.
Figure 3 in A new species of Zenopsis (Zeiformes: Zeidae) from the South China Sea, East China Sea and off Western Australia
Figure 3. Diagrammatic figures of anal-fin pterygiophores and spines of 3 species of Zenopsis: A, Z. stabilispinosa, holotype, FAKU 64803 (307.2 mm SL); B, Z. nebulosa, FAKU 64805 (379 mm SL); C, Z. conchifer, RUSI 14070 (135.5 mm SL). Scales indicate 10 mm.
Figure 2 in A new species of Zenopsis (Zeiformes: Zeidae) from the South China Sea, East China Sea and off Western Australia
Figure 2. Diagrammatic figure (A), and teeth on jaws and vomer (B) of the holotype of Zenopsis stabilispinosa sp. nov., FAKU 64803.
Figure 1 in Neohexostoma gymnosardae n. sp. (Monogenea, Hexostomatidae), a gill parasite of Gymnosarda unicolor (Valenciennes) (Teleostei, Scombridae) in the South China Sea
Figure 1. Maximum likelihood tree based on an analysis of 28S rDNA sequences. Bootstrap percentages with 1000 replicates.
Figure 3 in Neohexostoma gymnosardae n. sp. (Monogenea, Hexostomatidae), a gill parasite of Gymnosarda unicolor (Valenciennes) (Teleostei, Scombridae) in the South China Sea
Figure 3. Photographs of Neohexostoma gymnosardae n. sp. (A) Holotype, whole worm (ventral view); (B) Male copulatory organ; (C) Vaginal spines; (D) Haptor; (E)–(F) Eggs; (G) Clamp with sclerites in lateral view. (B)–(G) are paratypes.
Fig. 2 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 2. Schematic illustrations of Ceratomyxa kareus sp. n. A–L – from Kareius bicoloratus; M–N – from Zebrias zebra; A–D – lateral view of mature spore; E–F, N – plasmodia with two spores; G–J – earlier stage plasmodia; K – plasmodium with one spore; L–M – plasmodia with mature spores. Scale bars: 10 µm.
Fig. 3 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 3. Schematic illustrations of Ceratomyxa spp. A–E – Ceratomyxa lomi sp. n.; A – mature spore viewed from the perspective of the capsule; B–D – lateral view of mature spore; E – plasmodium with two mature spores; F–J – Ceratomyxa lateolabrax sp. n.; F – plasmodium with two spores; G–J – lateral view of mature spore; K–N – Ceratomyxa qingdaoensis sp. n.; K–L, N – showing a lateral view of a mature spore; M – lateral view of an immature spore. Scale bars: 10 µm.
Fig. 1 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 1. Schematic illustrations of three myxosporean species. A–E – Sphaerospora sebasta sp. n.; A – mature spore from a frontal view; B–C – spore viewed from the perspective of the capsule; D – spore from a sutural view; E – spore from an oblique sutural view; F–H – Ceratomyxa sebastisca sp. n., showing mature spores with coarse sporoplasm; I–O – Ceratomyxa hemitriptera sp. n.; I–J – mature spore from a lateral view; K–L – plasmodium with one mature spore; M–N – early stage plasmodium with one developing spore; O – plasmodium with one developing spore from a capsule view. Scale bars: 10 µm.
Fig. 5 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 5. Microphotographs of myxosporean species. A–B – Sphaerospora sebasta sp. n.; C – Ceratomyxa sebastisca sp. n.; D–E – Ceratomyxa hemitriptera sp. n.; F–H – Ceratomyxa kareus sp. n.; I–J – Ceratomyxa lomi sp. n. Scale bars: 10 µm.
Fig. 4 in Data on Ten New Myxosporean Parasites (Myxozoa, Myxosporea, Bivalvulida) from the Yellow Sea, China
Fig. 4. Schematic illustrations of Ceratomyxa spp. A–G – Ceratomyxa saurida sp. n.; A–D, G – lateral view of mature spore; E – lateral view of abnormal spore; F – lateral view of immature spore; H–L – Ceratomyxa simplex sp. n.; H, J – lateral view of mature spore; I – immature spore viewed from the perspective of the capsule; K–L – plasmodia with one spore; M–T – Ceratomyxa triacantha sp. n.; M–N, P – plasmodia with two spores; O, Q – early stage plasmodia with many nuclei; R–T – sutural view of mature spores. Scale bars: 10 µm.
Monthly mass-term sea level variations used for "A Novel Slepian Approach for Determining Mass-term Sea Level from GRACE over the South China Sea"
<p>The dataset contains the monthly mass-term sea level variations in the South China Sea from 2005 to 2015. Five datasets were used to calculate the mass-term sea level variations: the GRACE Spherical Harmonics (noted SHC), the GRACE Mascon solutions (noted Mascon), the GRACE Slepian Function solutions (noted EST), ECCO Ocean botton pressure model (noted ECCO), and steric-corrected satellite altimetry dataset (noted AsS). Besides, the signal (with trend, seasonal and semi-seasonal information) and the residual mass-term sea level was given separately. </p> <p>The boundary of the South China Sea and the longtidue and latitude of the study area were also given. Please noted that the longitude and latitude of the steric-corrected satellite altimetry dataset was different from the other four.</p> <p>For further information about the Slepian function method, please refer to our released code:</p> <p>https://github.com/KMartin0013/Slepian_ocean_add-on.git</p> <p>If you use this dataset, please cite our work properly:</p> <p>Zhongtian, Ma, Hok Sum Fok, Robert Tenzer, Jianli Chen. A Novel Slepian Approach for Determining Mass-term Sea Level from GRACE over the South China Sea. <em>Int. J. Appl. Earth. Obs. Geoinf.</em>, 132, 104065, 2024. doi:<a title="https://doi.org/10.1016/j.jag.2024.104065" href="https://doi.org/10.1016/j.jag.2024.104065" rel="nofollow">https://doi.org/10.1016/j.jag.2024.104065</a></p>
Fig. 10 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 10. Lepidozona acostata, holotype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; A, B – dorsal scales; C–I – marginal needle, scales and spicules; J – ventral scale; K – central and lateral teeth of radula; L – head of major lateral tooth of radula. Scale bar 100 µm.
Fig. 11 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 11. Lepidozona excellens, holotype, BL 18.0 mm, Philippine Sea, R/V Odissey, stn 37, 380–420 m; A – valve I, dorsal view; B – valve II, dorsal view; C – valve V, dorsal view, D – valve VIII dorsal view; E – valve VIII, lateral view; F – valve VII, detail of tegmentum in jugal, central and lateral areas; G – valve VII, detail of tegmentum in, central and lateral areas; H – valve V, rostral view.
Fig. 8 in New and rare species of the genus Lepidozona (Mollusca: Polyplacophora) from the South China, East China and the Philippine seas
Fig. 8. Lepidozona acostata, holotype, BL 8 mm, south Vietnam, R/V Odissey, trawl 59, 310 m, on sunken wood; A – valve I, dorsal view; B – valve V, dorsal view, C – valve VIII, dorsal view; D – valve V, ventral view; E – valve V, detail of tegmentum in central area; F – valve VIII, lateral view; G – valve IV, rostral view.
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.