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2,991 results for “indian ocean”
Fig. 1 in Authenticating wild Piper species (peppers) originating from islands in the Indian Ocean on the basis of morphological, genetic and chemical characteristics
Fig. 1. Projection of pepper individuals on the first two dimensions of the FAMD.
Figure 5 in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 5. – Standard length against three morphometric characters, caudal-fin length against pectoral-fin length, and total number of gill rakers against pectoral-fin length in Parupeneus heptacanthus vs. P. fraserorum and P. procerigena. In each species the two size groups are distinguished.
Figure 4 in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 4. – Standard length against five morphometric characters in Parupeneus fraserorum vs. P. procerigena. In each species the two size groups are distinguished
Figure 3 in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 3. – Standard length against four morphometric characters and total number of gill rakers against barbel length in Parupeneus inayatae n. sp. vs. P. heptacanthus and P. seychellensis. In P. heptacanthus the two size size groups and three populations are distinguished.
Figure 1. – A-C in A new species and new records of goatfishes of the genus Parupeneus (Mullidae) from the Indian Ocean, with updated occurrence information for P. jansenii in the Western Pacific
Figure 1. – A-C: Holotype of Parupeneus inayatae n. sp., MZB 24565, 150 mm SL, SE Lombok, Indonesia; A: Fresh (side reversed; William T. White); B: Preserved left body side; C: Right body side (side reversed); D: P. fraserorum, SAIAB 81744, 133 mm SL, off Mozambique (Phil C. Heemstra); E: P. procerigena, SAIAB 84075, 114 mm SL, Nazareth Bank (Oddgeir Alvheim); F: P. heptacanthus HIFIRE VP 216-14, 154 mm, off Myanmar (Oddgeir Alvheim); G: P. nansen, SAIAB 86973, 141 mm SL, Zanzibar, Tanzania (Gavin Gouws and Monica Mwale); H: P. jansenii, HIFIRE F 58 448, 85 mm SL, Myanmar (unvouchered photograph; Oddgeir Alvheim); I: P. jansenii, UPVMI 2260, 110 mm SL, Iloilo, Central Philippines (Ulysses Alama). Scale bars = 20 mm.
Figure 4. – Parabothus rotundifrons. A in Parabothus rotundifrons (Pleuronectiformes: Bothidae), a new bothid flatfish from Saya de Malha Bank (Indian Ocean)
Figure 4. – Parabothus rotundifrons. A: First gill arch; B: Lateral line scale on ocular side; C: Caudal skeleton. Scale bars = 1 mm.
Figure 2 in Evidence of two species currently under the name of Eleotris fusca (Gobioidei: Eleotridae) in the Indian Ocean
Figure 2. – Bayesian tree of the cytochrome c oxidase subunit (COI) for sequenced specimens of Eleotris. Numbers on the nodes represent posterior probabilities.
Figure 1. – Geographical coverage. A in The benthic and pelagic phases of Muraenolepis marmorata (Muraenolepididae) off the Kerguelen Plateau (Indian sector of the Southern Ocean)
Figure 1. – Geographical coverage. A: Bottom trawl stations conducted during the "POKER" 1 (2006 in white), POKER 2 (2010 in grey), and POKER 3 (2013 in black) surveys off the Kerguelen Islands; B: Bottom commercial longlines conducted from 2006 to 2016 off the Kerguelen Islands (source: PECHEKER database). Continuous line shows the boundary of the 200 Nautical Mille French Exclusive Eco- nomic Zone.
Figure 3 in The benthic and pelagic phases of Muraenolepis marmorata (Muraenolepididae) off the Kerguelen Plateau (Indian sector of the Southern Ocean)
Figure 3. – Densities (n/set) of Muraenolepis marmorata during the POKER surveys: POKER 1 2006 (top); POKER 2 2010 (bottom).
Figure 3 in Growth of the oblique-banded grouper (Epinephelus radiatus) on the coasts of Reunion Island (SW Indian Ocean)
Figure 3. - Growth curves of different species of the genus Epinephalus in the southern hemisphere (1: Condini et al., 2014; 2: Costa et al., 2011; 3: Nichols and DeMartini, 2008; 4: Fry et al., 2006; 5: Pothin et al., 2004; 6: Langi, 1988).
Figure 1 in Growth of the oblique-banded grouper (Epinephelus radiatus) on the coasts of Reunion Island (SW Indian Ocean)
Figure 1. - Otolith transverse section of Epinephelus radiatus (TL = 31.4 cm; 3 years old) using transmitted light. Growth increments were identified by black crosses.
Comparative biogeography and the evolution of population structure for bottlenose and common dolphins in the Indian Ocean
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Data from: Identification of a bacterial pathogen associated with Porites white patch syndrome in the Western Indian Ocean
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Impact of improved ocean initial condition on the seasonal prediction of Indian summer monsoon
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Pieces in a global puzzle: Population genetics at two whale shark aggregations in the western Indian Ocean
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NOAA GHRSST Level 2P Indian Ocean Regional Skin Sea Surface Temperature v1.0 from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) on the Meteosat Second Generation-1 (MSG-1) satellite
The GHRSST L2P MSG01 SST v1.0 dataset is produced by the US National Oceanic and Atmospheric Administration (NOAA) National Environmental Satellite, Data, and Information Service (NESDIS) from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) onboard the Meteosat-8 (MSG1) satellite. It provides the full disk SEVIRI imagery covering the Indian Ocean region from its position at 45.5°E longitude. The L2P SST is produced at approximately 3 km resolution with a 15 minute duty cycle. The full data records stretch from Sept. 18, 2018 to June 1, 2022. After June 1, 2022, the Meteosat-9 (MSG2) took over as the prime geostationary satellite for the Indian Ocean region (MSG02-OSPO-L2P-v1.0). Be aware that the granules before Dec. 1, 2022 contain some uncorrected metadata errors. <br><br>The SST measurements from SEVIRI are key parameters in study of the weather, atmosphere, climate and ocean environments. Meteosat satellites have been providing crucial data for weather forecasting since 1977. <br><br>This L2P SST product which includes Single Sensor Error Statistics (i.e., uncertainty statistics) follows the GHRSST Data Processing Specification (GDS) version 2.0 format guidelines. Please refer to the user guide for more information.
GHRSST Level 3C Indian-Ocean (IO) sub-skin Sea Surface Temperature from the Spinning Enhanced Visible and Infrared Imager (SEVIRI) on MSG in GDS2 format produced by OSISAF
This dataset is produced by the Ocean and Sea Ice Satellite Application Facility (OSI SAF) from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) instrument onboard the Meteosat Second Generation (MSG-1), Meteosat-8 satellite (launched on 28 August 2002). The dataset covers the Indian Ocean region with latitude of 60S-60N and longitude of 101.5E-18.5W. Level-3C SST, in the NetCDF format recommended by Group for High Resolution Sea Surface Temperature (GHRSST), is identical to Level-2P GHRSST products, 3 refers to gridded products and C to the fact that hourly products result from compositing 15 minutes (MSG) or 30 minutes (GOES-E) data.The European Organization for the Exploitation of Meteorological Satellites (EUMETSAT), OSI SAF is producing SST products in near real time from MSG/SEVIRI. SEVIRI level 1.5 data are acquired at Meteo-France/Centre de Meteorologie Spatiale (CMS) through the EUMETSAT/EUMETCAST system. SST is retrieved from the SEVIRI infrared channels (10.8 and 12.0 micrometer) using a multispectral algorithm. Atmospheric profiles of water vapor and temperature from a numerical weather prediction model, together with a radiatiave transfer model, are used to correct the multispectral algorithm for regional and seasonal biases due to changing atmospheric conditions. Every 15 minutes slot is processed at full satellite resolution. The operational products are then produced by remapping over a 0.05-degree regular grid (60S-60N and 135W-15W) SST fields obtained by aggregating all 15-minute SST data available in one-hour time, and the priority being given to the value the closest in time to the product nominal hour. The product format is compliant with the GHRSST Data Specification (GDS) version 2.
NOAA GHRSST Level 2P Indian Ocean Regional Skin Sea Surface Temperature v1.0 from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) on the Meteosat Second Generation-2 (MSG-2) satellite
The GHRSST L2P MSG02 SST v1.0 dataset is produced by the US National Oceanic and Atmospheric Administration (NOAA) National Environmental Satellite, Data, and Information Service (NESDIS) from the Spinning Enhanced Visible and InfraRed Imager (SEVIRI) onboard the Meteosat-9 (MSG2) satellite. It provides the full disk SEVIRI imagery covering the Indian Ocean region from its position at 45.5°E longitude. The L2P SST is produced at approximately 3 km resolution with a 15 minute duty cycle. On June 1, 2022, the Meteosat-9 (MSG2) replaced the Meteosat-8 (MSG1) (MSG01-OSPO-L2P-v1.0) and produced the L2P SST data from June 11. 2022 to the present. This dataset will be updated every 15 minutes as a forward data stream with 3-24 hours nominal latency. Be aware that the granules before Dec. 1, 2022 contain some uncorrected metadata errors.<br><br>The SST measurements from SEVIRI are key parameters in study of the weather, atmosphere, climate and ocean environments. Meteosat satellites have been providing crucial data for weather forecasting since 1977. <br><br>This L2P SST product which includes Single Sensor Error Statistics (i.e., uncertainty statistics) follows the GHRSST Data Processing Specification (GDS) version 2.0 format guidelines. Please refer to the user guide for more information.
Figure 8 from: Short G, Claassens L, Smith R, De Brauwer M, Hamilton H, Stat M, Harasti D (2020) Hippocampus nalu, a new species of pygmy seahorse from South Africa, and the first record of a pygmy seahorse from the Indian Ocean (Teleostei, Syngnathidae). ZooKeys 934: 141-156. https://doi.org/10.3897/zookeys.934.50924
Figure 8 Distribution of Hippocampus nalu. Type locality in red.
Towards a decade of solar irradiation data (La Réunion Island, SW Indian Ocean)
<p>Years of solar irradiation data together with meteorological data acquisition localized in the French region of La Réunion Island (South West Indian Ocean).</p>
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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.