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2,163 results for “Western Pacific”
Fig 10 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 10. Lower jaw dentition in the three most similar Carcharhinus species. A. Carcharhinus borneensis (PMH244- 1, mature female 661 mm TL); B. Carcharhinus cerdale (PMH329-01, juvenile male 887 mm TL; left side of jaw with image reversed); C. Carcharhinus macloti (PMH057-15, mature female 1090 mm TL). https://doi.org/10.1371/journal.pone.0209387.g010
Fig 5 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 5. In situ teeth of Carcharhinus obsolerus sp. nov. (ANSP 77121, paratype). 370 mm TL female: A. upper teeth; B. lower teeth.
Fig 4 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 4. Teeth of Carcharhinus obsolerus sp. nov (ANSP 77121, paratype). 433 mm TL female; 4th anterolateral tooth from left side of jaw: A. upper tooth labial view; B. upper tooth lingual view; C. lower tooth labial view; D. lower tooth lingual view. https://doi.org/10.1371/journal.pone.0209387.g004
Fig 2 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 2. Head of Carcharhinus obsolerus sp. nov. (NMW 61463; Holotype). 433 mm TL female: A. lateral view; B. ventral view. https://doi.org/10.1371/journal.pone.0209387.g002
Fig 1 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 1. Lateral view of Carcharhinus obsolerus sp. nov. (NMW 61463; female holotype 433 mm TL). A. Preserved specimen; B. Painting by Lindsay Marshall (www. stickfigurefish.com.au). https://doi.org/10.1371/journal.pone.0209387.g001
Fig 3 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 3. Post-mandibular indentation of Meckel's cartilage in Carcharhinus obsolerus sp. nov. Radiograph of head of ANSP 77121, paratype; 433 mm TL female; arrow denotes indentation.
Fig 6 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 6. Digital radiograph of the head of Carcharhinus obsolerus sp. nov. (ANSP 77121, paratype). 370 mm TL female; chondrocranium highlighted in red. https://doi.org/10.1371/journal.pone.0209387.g006
Fig 8 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 8. Alignment of second dorsal fin in relation to anal fin of Carcharhinus obsolerus sp. nov. NMW 61463, holotype (433 mm TL female); yellow dashed line indicates alignment of origin of second dorsal fin with anal-fin midbase. https://doi.org/10.1371/journal.pone.0209387.g008
Fig 9 in Lost before found: A new species of whaler shark Carcharhinus obsolerus from the Western Central Pacific known only from historic records
Fig 9. Upper jaw dentition in the three most similar Carcharhinus species. A. Carcharhinus borneensis (PMH244-1, mature female 661 mm TL); B. Carcharhinus cerdale (PMH329-01, juvenile male 887 mm TL; left side of jaw with image reversed); C. Carcharhinus macloti (PMH057-15, mature female 1090 mm TL). https://doi.org/10.1371/journal.pone.0209387.g009
FIGURE 8 in The Sea Slug Phanerophthalmus luteus (Gastropoda: Opisthobranchia) and its Habitat and Ecology at the Marine Jellyfish Lake (Ongeim'l Tketau), Palau, Western Pacific Ocean
FIGURE 8. Central and Western Pacific showing the distribution of Phanerophthalmus luteus (black stars) and the location of Jellyfish Lake, Palau (large gray star). Modified from distribution map for P. luteus in Austin, Gosliner, and Malaquias (2018, fig. 23).
FIGURE 5 in The Sea Slug Phanerophthalmus luteus (Gastropoda: Opisthobranchia) and its Habitat and Ecology at the Marine Jellyfish Lake (Ongeim'l Tketau), Palau, Western Pacific Ocean
FIGURE 5. Hydrography of Jellyfish Lake. The water column is divided into an oxic and an anoxic zone by a bacterial plate that creates a chemo- and thermocline. The bacteria absorb all the light and digest most of the vegetation (except larger branches). No foraminifera or animals are known to live below the bacterial plate due to the absence of oxygen in the water column. Phanerophthalmus luteus is restricted to the upper 3 to 10 m in the oxygenated part of the water column; they are most abundant between 4.5 and 7.6 m. Figure modified from Venkateswaran et al. (1993) by adding the depth distribution of P. luteus.
FIGURE 4 in The Sea Slug Phanerophthalmus luteus (Gastropoda: Opisthobranchia) and its Habitat and Ecology at the Marine Jellyfish Lake (Ongeim'l Tketau), Palau, Western Pacific Ocean
FIGURE 4. Bathymetry of Jellyfish Lake, Mecherchar Island. The gray line with arrows indicates the area in the lake of our marine survey to 10 m deep for sea slugs along the north and east sides of the lake. Black circles indicate the transect and collecting stations for foraminifera used to estimate the depth distribution of Phanerophthalmus luteus. Map and transect from Lipps and Langer 1999.
FIGURE 3 in The Sea Slug Phanerophthalmus luteus (Gastropoda: Opisthobranchia) and its Habitat and Ecology at the Marine Jellyfish Lake (Ongeim'l Tketau), Palau, Western Pacific Ocean
FIGURE 3. Vegetation of Jellyfish Lake, Mecherchar Island. A. The lake, slightly less than 400 m long, is in a hole at least 230 m deep (150 to 200 m from the top of the hole to the Lake's surface and 30 m to the bottom of the lake) in the Miocene limestone. North is at the top of the image. B. Dense terrestrial vegetation, including mangroves at the lake edges, hangs over the lake. The surrounding vegetation contributes organic debris to the lake. C. Bottom of the lake from 0 to 13 m is covered with plant debris and algal growth. Photograph is at 2 m deep looking down slope. D. One of many logs that have fallen into the lake and are now inhabited by a wide variety of algae and animals including P. luteus. View is down the log from a depth of about 0.5 m. Credits: A. Aerial photograph courtesy of Dr. Pat Colin. B.-D. Photographs by Jere H. Lipps, 2013.
FIGURE 7 in The Sea Slug Phanerophthalmus luteus (Gastropoda: Opisthobranchia) and its Habitat and Ecology at the Marine Jellyfish Lake (Ongeim'l Tketau), Palau, Western Pacific Ocean
FIGURE 7. Egg masses (more or less spherical to oblong white objects) of Phanerophthalmus luteus attached to filamentous and other algae on a slope in Jellyfish Lake. Photograph taken November 16, 2009, courtesy of Lori J. Bell.
EMAC-L90MA-SD output used in "Stratospheric Injection of Brominated Very Short-Lived Substances: Aircraft Observations in the Western Pacific and Representation in Global Models"
<p>Output of halocarbons, inorganic bromine, and tropopause pressure from EMAC-L90MA-SD used in:</p> <p>Wales et al., Stratospheric Injection of Brominated Very Short-Lived Substances: Aircraft Observations in the Western Pacific and Representation in Global Models." <em>Journal of Geophysical Research: Atmospheres,</em> (2018).</p> <p>The EMAC-L90MA-SD simulation uses ERA-Interim meteorology and was prepared according to: </p> <p>Jöckel, P., Tost, H., Pozzer, A., Kunze, M., Kirner, O., Brenninkmeijer, C. A. M., Brinkop, S., Cai, D. S., Dyroff, C., Eckstein, J., Frank, F., Garny, H., Gottschaldt, K.-D., Graf, P., Grewe, V., Kerkweg, A., Kern, B., Matthes, S., Mertens, M., Meul, S., Neumaier, M., Nützel, M., Oberländer-Hayn, S., Ruhnke, R., Runde, T., Sander, R., Scharffe, D., & Zahn, A.: Earth System Chemistry integrated Modelling (ESCiMo) with the Modular Earth Submodel System (MESSy) version 2.51, <em>Geoscientific Model Development</em>, 9, 1153–1200, doi: 10.5194/gmd-9-1153-2016, URL <a href="http://www.geosci-model-dev.net/9/1153/2016/">http://www.geosci-model-dev.net/9/1153/2016/</a> (2016)</p> <p>For further details, please contact Patrick Joeckel (Patrick.Joeckel@dlr.de) and Phoebe Graf (Phoebe.Graf@dlr.de)</p>
Figure 1 in Marine Benthic Algae from Seamounts along the Mariana Islands, Western Pacific
Figure 1. Map of the islands, reefs, banks and shoals within the Mariana Islands. Map provided by NOAA PIFSC CRED (2015).
Datasets associated with "Thermochemistry of the mantle transition zone beneath the western Pacific"
<p>Handpicked and automatically picked datasets of ScSScS seismic data with bounce points beneath the Australasian region, lists of event and station information, measurements of the 410 and 660 km discontinuities, and thermochemical models (see readme.txt for details).</p>
Figure 1 in Validity of a poorly known western Pacific scorpionfish (Scorpaenidae), Neomerinthe pallidimacula (Fowler, 1938)
Figure 1. - Preserved specimens of Neomerinthe pallidimacula. A: USNM 98889, holotype of Scorpaena pallidimacula, 76.0 mm SL; B: MNHN 2001- 2850, 70.2 mm SL.
Figure 1. - A in Possible collapse of reef shark populations in remote coral reef ecosystems in the Coral Sea (Western Pacific)
Figure 1. - A: Location of the Chesterfield and Bampton reefs in a central position among the Coral Sea, between the Australian Eastern coast and New Caledonia. B: Close up of the reefs where the 2010 and 2011 field trips were conducted; specific spots for shark surveys are shown with circles around the Bampton Reefs. C: Close up on the Chesterfield reefs with circles showing the locations for fishing and underwater visual surveys.
Figure 3 in Possible collapse of reef shark populations in remote coral reef ecosystems in the Coral Sea (Western Pacific)
Figure 3. - Comparison of average sizes of grey reef shark (C. amblyrhynchos) assessed through underwater visual censuses during the 2010 (blue) and 2011 (orange) field trips. In order to facilitate the comparison, shark numbers were linked to effort (h). Sizes above 120 cm TL are essentially rep- resented by the assessment in BF3 spot (North Avon Islet) for which densities and sizes were far above the rest of the Bampton and Chesterfield reefs.
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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.