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.
54
datasets available to search
ShareScore release 0.9.0
Dataset results
54 results for “Pacific plate”
FIGURE 8 in Two new species of Foa (Apogonidae) from the Pacific Plate, with redescriptions of Foa brachygramma and Foa fo
FIGURE 8. Foa fo. A. AMS I.27783-003, semi-diagrammatic views opercular region with pores (shaded) and free neuromasts (dots). B. AMS I.27783-003, 28.9 mm SL, scales at the base of the caudal fin with ctenoid and cycloid scales, last pitted lateralline scale, and free neuromast (dots) patterns on scales. Right side laterally reversed.
Factors on the Mesozoic transition from flat to steep subduction of the Paleo-Pacific Plate beneath South China: Thickened oceanic crust and subduction rate
<p>This dataset contains simulation results used for visualizing Figures in "Factors on the Mesozoic transition from flat to steep subduction of the Paleo-Pacific Plate beneath South China: Thickened oceanic crust and subduction rate"</p>
FIGURE 2. Lebbeus dentatus n in Lebbeus dentatus n. sp. (Decapoda, Thoridae) described from a seamount of the Caroline Plate, NW Pacific
FIGURE 2. Lebbeus dentatus n. sp., not ovigerous female (cl 8.3 mm), MBM 287876. A, habitus in lateral view; B, anterior part of carapace and left cephalic appendages, dorsal view; C, antennal scale in dorsal view.
FIGURE 1. Lebbeus dentatus n in Lebbeus dentatus n. sp. (Decapoda, Thoridae) described from a seamount of the Caroline Plate, NW Pacific
FIGURE 1. Lebbeus dentatus n. sp., not ovigerous female (cl 8.3 mm), MBM 287876, habitus in lateral view, showing living colouration.
FIGURE 3. Lebbeus dentatus n in Lebbeus dentatus n. sp. (Decapoda, Thoridae) described from a seamount of the Caroline Plate, NW Pacific
FIGURE 3. Lebbeus dentatus n. sp., not ovigerous female (cl 8.3 mm), MBM 287876. A, anterior part of carapace and left cephalic appendages, lateral view; B, antennula; C, telson and right uropod, dorsal view; D, right maxilliped 3; E and F, left first pereopod 1 with fingers enlarged; G, left second pereopod; H, left third pereopod 3 with dactylus enlarged; H, left fourth pereopod with dactylus enlarged; J, left fifth pereopod with dactylus with dactylus enlarged.
A Modified Global Plate Model Including Quantitative Tomotectonic Plate Reconstruction of Western North America and the Eastern Pacific Basin
<p>This plate model is based on that of Clennett et al. (2020) (<a href="../records/10348271" target="_blank" rel="noopener">https://zenodo.org/records/10348271</a>). The Clennett et al. (2020) model was an extension of the global model of Müller et al. (2019) (<a href="../records/10525287" target="_blank" rel="noopener">https://zenodo.org/records/10525287</a>), with a focus on producing a more detailed tectonic reconstruction of the North American Cordillera. Further minor modifications were made to the model for a paper by Alfonso et al. (2024), using the <em>GPlates</em> software (<a href="https://url.au.m.mimecastprotect.com/s/JVvZCE8wmrt1kqgwPtNcn8j?domain=gplates.org/" target="_blank" rel="noopener">https://www.gplates.org/</a>). Firstly, several subduction zones in the published plate model have no associated motions, instead remaining entirely stationary relative to the mantle. This was judged to be incompatible with basic geodynamic principles, as geodynamic models indicate that trenches and subducting slabs are almost always in motion relative to the mantle, exhibiting retreat or, more rarely, advance (e.g. Capitanio, 2013; Capitanio et al., 2010; Schellart et al., 2007; Stegman et al., 2010). As trenches of intermediate length generally display relatively slow retreat (Schellart, 2008), a small amount of trench rollback was imposed on the subduction zones in this model, whilst ensuring that they remained located above their associated tomographically-imaged slabs. Additionally, the Orcas plate (170–130 Ma), located within the Cordilleran archipelago, was split into two sections separated by an east-west trending mid-ocean ridge, consistent with the subsequent plate configuration after 130 Ma. This was done to improve the consistency of the plate motion model, which appeared to indicate divergence within the Orcas plate and convergence at its boundaries. Finally, the reconstruction’s absolute plate motion model was recalculated using the iterative optimisation workflow developed by Tetley et al. (2019).</p> <p> </p> <p>The agegrids associated with this model can be accessed from: <a href="https://repo.gplates.org/webdav/PlateModel_Age_SR_Grids/Alfonso_etal_2024_modClennettMuller/" target="_blank" rel="noopener">https://repo.gplates.org/webdav/PlateModel_Age_SR_Grids/Alfonso_etal_2024_modClennettMuller/</a></p> <p> </p>
Figure 4 from: Wang Y, Zhu C, Sha Z, Ren X (2020) Epimeria liui sp. nov., a new calcified amphipod (Amphipoda, Amphilochidea, Epimeriidae) from a seamount of the Caroline Plate, NW Pacific. ZooKeys 922: 1-11. https://doi.org/10.3897/zookeys.922.49141
Figure 4 Epimeria liui sp. nov., female holotype (17.8 mm) (MBM 286613), H, head; UL, upper lip; LL, lower lip; Md L, left mandible; Mx1 L, left maxilla 1; Mx2 L, left maxilla 2; Mxp, maxilliped.
Figure 1 from: Wang Y, Zhu C, Sha Z, Ren X (2020) Epimeria liui sp. nov., a new calcified amphipod (Amphipoda, Amphilochidea, Epimeriidae) from a seamount of the Caroline Plate, NW Pacific. ZooKeys 922: 1-11. https://doi.org/10.3897/zookeys.922.49141
Figure 1 Epimeria liui sp. nov., female holotype (17.8 mm) (MBM 286613), photographed immediately after capture by Shao-qing Wang.
Figure 3 from: Wang Y, Zhu C, Sha Z, Ren X (2020) Epimeria liui sp. nov., a new calcified amphipod (Amphipoda, Amphilochidea, Epimeriidae) from a seamount of the Caroline Plate, NW Pacific. ZooKeys 922: 1-11. https://doi.org/10.3897/zookeys.922.49141
Figure 3 Epimeria liui sp. nov., female holotype (17.8 mm) (MBM 286613), P3 R, right pereopod 3; P4 R, right pereopod 4; P5 R, right pereopod 5; P6 R, right pereopod 6; P7 R, right pereopod 7; A1, antenna 1; A2, antenna 2; U1 R, right uropod 1; U2 R, right uropod 2; U3 R, right uropod 3; T, telson.
Figure 2 from: Wang Y, Zhu C, Sha Z, Ren X (2020) Epimeria liui sp. nov., a new calcified amphipod (Amphipoda, Amphilochidea, Epimeriidae) from a seamount of the Caroline Plate, NW Pacific. ZooKeys 922: 1-11. https://doi.org/10.3897/zookeys.922.49141
Figure 2 Epimeria liui sp. nov., female holotype (17.8 mm) (MBM 286613), G1 R, right gnathopod 1; G2 R, right gnathopod 2.
Figure 4 from: Wang Y, Sha Z, Ren X (2024) One new species of Stegocephalus Krøyer, 1842 (Amphipoda, Stegocephalidae) described from a seamount of the Caroline Plate, NW Pacific. ZooKeys 1195: 121-130. https://doi.org/10.3897/zookeys.1195.114209
Figure 4 Stegocephalus carolus sp. nov., MBM 286610, holotype, ♀ (8.9 mm): P3 R, right pereopod 3; P4 R, right pereopod 4; P5 R, right pereopod 5; P6 R, right pereopod 6; P7 R, right pereopod 7; U1 R, right uropod 1; U2 L, left uropod 2; U3 L, left uropod 3; T, telson.
Figure 2 from: Wang Y, Sha Z, Ren X (2024) One new species of Stegocephalus Krøyer, 1842 (Amphipoda, Stegocephalidae) described from a seamount of the Caroline Plate, NW Pacific. ZooKeys 1195: 121-130. https://doi.org/10.3897/zookeys.1195.114209
Figure 2 Stegocephalus carolus sp. nov., MBM 286610, holotype, ♀ (8.9 mm): G1 R, right gnathopod 1; G2 R, right gnathopod 2.
Figure 3 from: Wang Y, Sha Z, Ren X (2024) One new species of Stegocephalus Krøyer, 1842 (Amphipoda, Stegocephalidae) described from a seamount of the Caroline Plate, NW Pacific. ZooKeys 1195: 121-130. https://doi.org/10.3897/zookeys.1195.114209
Figure 3 Stegocephalus carolus sp. nov., MBM 286610, holotype, ♀ (8.9 mm): H, head; A1, antenna 1; A2, antenna 2; UL, upper lip; LL, lower lip; Md L, left mandible; Md R, right mandible; Mx1, maxilla 1; Mx2, maxilla 2; Mxp, maxilliped.
Figure 1 from: Wang Y, Sha Z, Ren X (2024) One new species of Stegocephalus Krøyer, 1842 (Amphipoda, Stegocephalidae) described from a seamount of the Caroline Plate, NW Pacific. ZooKeys 1195: 121-130. https://doi.org/10.3897/zookeys.1195.114209
Figure 1 A map showing the location of the sampling site (red triangle) in the NW Pacific.
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.