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184 results for “Philippine Sea”
Digital reconstruction model of the Philippine Sea region since the Eocene
<p>Insight into the evolution of Philippine Sea-South China Sea plate motions helps reveal the driving mechanisms of the long-term tectonic complexity in Southeast Asia. Here we present a new plate reconstruction model of this region characterized by back-arc extension and subduction since the Eocene by integrating the latest local geological and seismic data. </p>
Back-arc tectonics and plate reconstruction of the Philippine Sea-South China Sea region since the Eocene
<p>This repository contains GPlates plate reconstruction model, CitComS simulation original results and supplementary movies for "<strong>Back-arc tectonics and plate reconstruction of the Philippine Sea-South China Sea region since the Eocene</strong>" as below:</p> <p>1. Liu_etal_GRL_PS_SCS.zip</p> <p>2. Temperature_field_along_sections.zip</p> <p>3. Movie_S1_Plate_motion_since_55_Ma_with_oceanic_crust_age.mp4</p> <p>4. Movie_S2_Plate_motion_since_55_Ma.mp4</p>
Deep subduction of the Philippine Sea slab and formation of slab window beneath central Japan
<p>The travel-time data, the velocity model from seismic tomography and the temperature distributions from numerical simulation.</p>
Revealing Crustal Structure of the Western Philippine Sea Subduction Zone through Seismic, Gravity and Magnetic Joint Inversion Based on Minimum Support Cross-Gradient Coupling
<p>Data contains the synthetic model data and field data.<br> Final model contains the joint and single inverison result. <br> First volum of the data and model represents the location on the profile.</p> <p>Second volum of the model represents the depth of the model, which is all positive.</p> <p>Second volum of the data represent the value of the synthetic data.</p> <p>Rec_obs represents the reflection observed data,fir_tob represents the first arrival travel time observed data, the first and the second volum represents the source number and the receiver number. </p>
Data from: Life history, growth, and reproductive biology of four mobulid species in the Bohol Sea, Philippines
Open the record for dataset details and reuse information.
Biological productivity and community structure of phytoplankton in the oligotrophic Philippine Sea
<p>In the Philippine Sea, mesoscale eddies have been frequently observed, but little is known about their contributions to the biological productivity and community structure of phytoplankton in the region. In situ carbon and nitrogen uptake rates and phytoplankton community structure were investigated in the Philippine Sea based on the 13C-15N dual-tracer technique and photosynthetic pigment analysis from late August to September 2018. Based on the comparison of the phytoplankton community structure among the cold eddy, warm eddy, and outer area, we found that the phytoplankton composition was different in the warm eddy with relatively lower contributions of large phytoplankton. However, a distinct enhancement in phytoplankton biomass over the euphotic zone was not detected even in eddy occurrence. In terms of community, the picoplankton Prochlorococcus was persistently dominant, which was attributed to a low supply and chemical composition of nutrients. The average integrated primary productions (IPP) were 80.4, 75.9, and 76.3 mg C m−2 d−1 for the cold eddy, warm eddy, and outer area, respectively. The IPP under the eddy condition was not largely different from that in reference sites, even though the vertical distribution of productivity maximum was found to be different depending on eddy condition. These weak biological responses to mesoscale eddies might be attributed to the sustaining picoplankton-dominant community structure and no substantial upward inputs of nutrients to the euphotic zone. Our findings represent an important contribution to understanding the biological response of mesoscale eddies in the oligotrophic Philippine Sea.</p>
Figure 9 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 9 Dicranodromia karubar Guinot, 1993. A–H, J ♀ (27.1 × 33.4 mm) (ZRC 2020.0348), Java I ♀ (27.6 × 33.8 mm) (ZRC 2020.0348), Java A epistome, antennules, antennae and orbits B left third maxilliped C right chela (denuded) D right P3 (denuded) E right P3 dactylus (denuded) F right P5 (denuded) G right P5 propodus and dactylus (partially denuded) H right P4 propodus and dactylus (partially denuded) I telson J posterior thoracic sternum showing spermatheca and female gonopores.
Figure 7 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 7 Colour in life. A,BDicranodromia karubar Guinot, 1993, ♂ (28.7 × 34.7 mm) (ZRC 2020.0348), Java CD. karubar Guinot, 1993, ovigerous ♀ (30.1 × 35.5 mm) (ZRC 2020.0349), Java DD. karubar Guinot, 1993, ovigerous ♀ (24.8 × 31.5 mm) (ZRC 2020.0348), Java ED. erinaceus sp. nov., holotype ♀ (14.0 × 18.0 mm) (NTOU B00126), Taiwan FD. erinaceus sp. nov., paratype ♂ (6.9 × 9.5 mm) (ZRC 2021.0084), Taiwan. Photographs: T.-Y. Chan.
Figure 5 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 5 Dicranodromia martini Guinot, 1995, ♀ (28.1 × 34.2 mm) (ZRC 2007.0106), Philippines A epistome, antennules, antennae and orbits B left chela C right P3 D right P5 E right P5 dactylus F right P4 G telson H posterior thoracic sternum showing spermatheca and female gonopores.
Figure 6 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 6 Dicranodromia martini Guinot, 1995, ♂ (12.3 × 16.6 mm) (ZRC 2007.0105), Philippines A overall view B dorsal view of carapace C anterior part of carapace (partially denuded) D male telson.
Figure 3 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 3 Dicranodromia doederleini Ortmann, 1892, ovigerous ♀ (14.5 × 19.2 mm) (ZRC 2021.0469), Japan A left chela B left P3 C right P3 dactylus D left P5 E left P5 propodus and dactylus F left P4 propodus and dactylus G anterior thoracic sternum and spermatheca H posterior thoracic sternum showing spermatheca and female gonopores.
Figure 4 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 4 Dicranodromia martini Guinot, 1995, ♀ (28.1 v 34.2 mm) (ZRC 2007.0106), Philippines A overall view B right third maxilliped C dorsal view of carapace D anterior part of carapace (right side denuded) E frontal view of cephalothorax.
Figure 8 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 8 Dicranodromia karubar Guinot, 1993, ♀ (27.1 × 33.4 mm) (ZRC 2020.0348), Java A overall view B dorsal view of carapace C anterior right part of carapace (denuded) D frontal view of cephalothorax.
Figure 20 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 20 Dicranodromia robusta sp. nov., paratype ♂ (15.2 × 21.0 mm) (ZRC 2018.0095), Philippines A overall view B dorsal view of carapace C pleon D anterior thoracic sternum and G1s in situ.
Figure 22 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 22 Maximum likelihood phylogenetic tree for Dicranodromia erinaceus sp. nov. based on the COI gene dataset. Homolodromia kai Guinot, 1993 was chosen as outgroup. Maximum likelihood bootstrap value is represented as above the branches. Values less than 50 are not shown.
Figure 21 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 21 ADicranodromia erinaceus sp. nov., holotype ♀ (14.0 × 18.0 mm) (NTOU B00126), Taiwan B, D–F, K–MD. erinaceus sp. nov., paratype ♂ (8.2 × 12.5 mm) (ZRC 2021.0085), Taiwan C, G–J, N–PD. robusta sp. nov., paratype ♂ (15.2 × 21.0 mm) (ZRC 2018.0095), Philippines A–C right anterior part of carapace (setae removed or not drawn) D right P3 propodus and dactylus E right P5 propodus and dactylus F right P4 propodus and dactylus G right P3 propodus and dactylus H right P5 propodus and dactylus I left P5 propodus and dactylus J left P4 propodus and dactylus K, N left G1 (ventral view) L, O left G1 (dorsal view) M, P left G2. Setae for all structures not figured. Scale bars: 1.0 mm.
Figure 2 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 2 Dicranodromia doederleini Ortmann, 1892, ovigerous ♀ (14.5 × 19.2 mm) (ZRC 2021.0469), Japan A overall view B dorsal view of carapace C left third maxilliped D frontal view of cephalothorax E epistome, antennules, antennae and orbits.
Figure 18 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 18 Dicranodromia robusta sp. nov., holotype ♀ (19.6 × 26.4 mm) (ZRC 2018.0161), Philippines A ventral view of cephalothorax B left third maxilliped C frontal view of cephalothorax D epistome, antennules, antennae and orbits E dorsal view of left chela F left chela.
Figure 19 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 19 Dicranodromia robusta sp. nov., holotype ♀ (19.6 × 26.4 mm) (ZRC 2018.0161), Philippines A right P3 B right P5 C right P5 propodus and dactylus D left P4 propodus and dactylus E anterior thoracic sternum and spermatheca F posterior thoracic sternum showing spermatheca.
Figure 16 from: Ng PKL, Yang C-H (2021) On two new species of deep-sea carrier crabs (Crustacea, Brachyura, Homolodromiidae, Dicranodromia) from Taiwan and the Philippines, with notes on other Indo-West Pacific species. ZooKeys 1072: 129-165. https://doi.org/10.3897/zookeys.1072.72978
Figure 16 Dicranodromia erinaceus sp. nov., paratype ♂ (8.2 × 12.5 mm) (ZRC 2021.0085), Taiwan A overall view B dorsal view of carapace C pleon D anterior thoracic sternum and G1s in situ.
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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.