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976 results for “Pacific Islands”
Fig. 2 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus
Fig. 2. Heteropolypus annae sp. nov., holotype (MIMB 42493); sclerites from the autozooid tentacles. A. Waisted plates. B. Plates. C. Flanged spindles. D. Warty spindles. E. Club-like spindle. F. Clubs. G. Capstans. H. Slender capstans. Scale bar = 0.1 mm.
Fig. 1 in New species of deep-sea Heteropolypus soft corals (Anthozoa: Octocorallia) from the Kurile Islands, Sea of Okhotsk (Northwest Pacific), with summary data on distinctive characters of the known species of the genus
Fig. 1. Heteropolypus annae sp. nov. A. Holotype (MIMB 42493), Kurile Islands, Sea of Okhotsk. View from above. B. Holotype (MIMB 42493), Kurile Islands, Sea of Okhotsk. View from below. C. One specimen, Kurile Islands, Sea of Okhotsk (MIMB 42496). D. One specimen, Kurile Islands, Sea of Okhotsk (MIMB 42496). E. Paratype (MIMB 42494), Kurile Islands, Sea of Okhotsk. F. Holotype (MIMB 42493); section of the capitulum; 1 = autozooid, 2 = mesozooid. G. Holotype (MIMB 42493); surface of the capitulum; 1 = mesozooids. Scale bars: A–E = 10 mm; F–G = not to scale.
FIGURE 1. The Farallon Islands, approximately 40 in A New Species of Whip-Like Gorgonian Coral in the Genus Swiftia from the Gulf of the Farallones in Central California, with a Key to Eastern Pacific Species in California (Cnidaria, Octocorallia, Plexauridae)
FIGURE 1. The Farallon Islands, approximately 40 miles west of San Francisco, California, and 70 miles southeast of the type locality of Swiftia farallonesica sp. nov., in the Greater Farallones National Marine Sanctuary.
FIGURE 2. Shells. A in Three New Species of Aglajid Cephalaspidean Mollusks from the Tropical Indo-Pacific of the Verde Island Passage
FIGURE 2. Shells. A. Philinopsis buntot. sp. nov., paratype, CASIZ 185942, Tingloy, Philippines. B. Philinopsis aliciae sp. nov., holotype, PNM 41061, Mabini, Philippines. C. Chelidonura alexisi sp. nov., holotype, PNM 41062, Mabini, Philippines.
FIGURE 1. Living animals A–B in Three New Species of Aglajid Cephalaspidean Mollusks from the Tropical Indo-Pacific of the Verde Island Passage
FIGURE 1. Living animals A–B. Philinopsis aliciae sp. nov., holotype, PNM 41061, Mabini, Philippines. C. Philinopsis buntot sp. nov., holotype, PNM 41060, Mabini, Philippines, ventral view showing markings on foot. D. Philinopsis buntotparatype, CASIZ 185942, Tingloy, Philippines. E. Chelidonura alexisi sp. nov., holotype, PNM 41062, Mabini, Philippines.
FIGURE 7 in Three New Species of Aglajid Cephalaspidean Mollusks from the Tropical Indo-Pacific of the Verde Island Passage
FIGURE 7. Bayesian maximum credibility tree showing all taxa included for the analysis of the combined H3, 16S, and COI sequence alignments (after Camacho et al. 2014). Posterior probabilities areindicated above each branch (for the analysis without COI third positions on the left, and for the analysis with COI third positions on the right) and bootstrap values areindicated below each branch. Branch lengths are also shown here indicating the proportion of substitutions. Species names are color-coded according to their range, blue forIndo-Pacific, red for Atlantic and green for Eastern Pacific. The phylogenetic positions of Philinopsis buntot sp. nov. and Chelidonura alexisi sp. nov. are indicated by arrows on the tree.
Self-reported and accelerometry measures of sleep components in adolescents living in Pacific Island countries and territories: Exploring the role of sociocultural background
<p>Data from self-report questionnaires and accelerometer extraction on sleep components (onset sleep time, wake-up time and sleep duration on weekdays and weekend).</p> <p>Participant characteristics: 10 to 16 years old students.</p> <p>Number of participants: 182.</p> <p>Year of the study: 2018 - 2019.</p> <p>Place of the study: New Caledonia.</p>
Figure 2 in A rapid assessment of cave occupancy for Pacific sheath-tailed bats (fanihin ganas, Emballonura semicaudata rotensis) and Mariana swiftlets (chachaguak, Aerodramus bartschi) on Aguiguan, Mariana Islands
Figure 2: Locations of caves surveyed for Pacific sheath-tailed bat and Mariana swiftlet occupancy by the Commonwealth of the Northern Mariana Islands Division of Fish and Wildlife in 2021, with WorldView-2 satellite imagery (dated April 14, 2019) for reference. Surveyed caves are labeled: 1 – East Black Noddy Cave; 2 – Cliff Cave; 3 – Pillar Cave; 4 – Guano Cave; 5 – New Cave Complex; 6 – Southern Cave Complex; 7 – Crevice Cave
Figure 1 in A rapid assessment of cave occupancy for Pacific sheath-tailed bats (fanihin ganas, Emballonura semicaudata rotensis) and Mariana swiftlets (chachaguak, Aerodramus bartschi) on Aguiguan, Mariana Islands
Figure 1: Map depicting the location of the Commonwealth of the Northern Mariana Islands in relation to the Asia-Pacific region and the location of Aguiguan (blue circle) within the archipelago. Sources: Basemaps: Esri, The General Bathymetric Chart of the Oceans, National Oceanic and Atmospheric Administration, National Geographic, DeLorme, HERE, Geonames.org, Garmin, United States Geological Survey, Earthstar Geographics.
Fig. 1. Thamnaconus garretti collected around Midway Island. A, FAKU 109580, 94.4 in A Record of the Rare Filefish, Thamnaconus garretti (Fowler, 1928), Collected around Midway Island, Central Pacific (Actinopterygii, Tetraodontiformes, Monacanthidae)
Fig. 1. Thamnaconus garretti collected around Midway Island. A, FAKU 109580, 94.4 mm SL; B, FAKU 125876, 167 mm SL (male); C, BPBM 16264, 167 mm SL. A and B, preserved specimens, photographs by F. Tashiro; C, defrosted specimen, photograph by J. E. Randall.
Figure 1 in Brodifacoum residues in fish three years after an island-wide rat eradication attempt in the tropical Pacific
Figure 1. Wake Island with the seven sampling locations marked by arrows. Site names include: 1 – Peale Lagoon Side, 2 – Ioke Beach House, 3 – Waterplant Outfall, 4 – Battery Dump Pond, 5 – Southern Runway Windsock (not sampled in this study), 6 – Old AF Beach House, 7 – Nitro Rock. Image courtesy of U.S. Air Force Civil Engineer Center.
Figure 8. – A in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 8. – A: Butis koilomatodon, BMNH 1894.1.19.35 (female, 56 mm SL), Malaysia (Photo L. Goodayle, BMNH); B: Butis koilomatodon, Timaka River, Papua New Guinea (Photo G. Allen).
Figure 5. – A in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 5. – A: Butis butis, MNHN 2022-0233, neotype (male, 55.2 mm SL), India (Photo P. Keith); B: Butis butis, Hamilton's original, unpublished illustration (from Britz, 2019); C: Butis butis, Fly River, Papua New Guinea (Photo G. Allen); D: Butis butis, MNHN 2022-0213 (male, 95 mm SL), Solomon, tag 17612 (Photo P. Keith).
Figure 4. – A in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 4. – A: Butis amboinensis, neotype, RMNH.PISC.85037 (77.5 mm SL), Indonesia (Photo F. Loggen, RMNH); B: Butis amboinensis, in MNHN 2005-1897 (74,4 mm SL), Vanuatu (Photo P. Keith); C: Butis amboinensis, MNHN 2022-0237 (67 mm SL), New Caledonia, tag RTNC_053 (Photo N. Charpin); D: Butis amboinensis, Kolobangara, Solomon (Photo C. Lord).
Figure 2 in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 2 (see also following page). – A: Bayesian tree of the cytochrome c oxidase subunit (COI; 452 bp) for sequenced specimens of Butis. Numbers at each node represent posterior probabilities. B: Barcoding NJ K2P tree of the COI gene (196 bp) for sequenced specimens of Butis including the holotype of Butis humeralis from the MNHN collection. Numbers at each node represent bootstrap values. C, D: Barcoding NJ K2P trees of the 12S and the 16S genes (129 and 270 bp respectively) for sequenced specimens of Butis collected during the 19th century from the MNHN collection including a paratype of B. audebertae (MNHN A-1503). Numbers at each node represent bootstrap values. [A high resolution version is available online.]
Figure 11. – Butis abdoui n in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 11. – Butis abdoui n. sp., paratype in MNHN 2005-0231 (male, 83.2 mm SL), Mayotte, Ouvoveni (Photo P. Keith).
Figure 1. – A in Review of Butis (Teleostei: Butidae) from Indo-Pacific islands with description of three new species
Figure 1. – A: The different patterns of interorbital scales (IOS); head in dorsal view. B: Size of the jaw; head in lateral view. C: Auxiliary scales on flanks.
Figure 2 in Stenogobius (Teleostei: Gobioidei) from the Indian-Pacific island rivers
Figure 2. – Bayesian tree based on partial COI sequences for the Stenogobius genus. Number on the nodes represent posterior probabilities.
Figure 9 in Stenogobius (Teleostei: Gobioidei) from the Indian-Pacific island rivers
Figure 9. – Stenogobius genivittatus, New Britain, Papua New Guinea, Gavuvu River. A: male; B: female (Photo: P. Keith).
Figure 8. – A in Review of Giuris (Teleostei: Eleotridae) from Indo-Pacific islands, with description of three new species
Figure 8. – A: Giuris margaritaceus, male; Choiseul, Solomon Islands (Photo P. Keith). B: G. margaritaceus, male; Santa Isabel, Solomon Islands (Photo P. Keith). C: G. margaritaceus, male; MNHN 2020-0135, New Britain, Papua New Guinea; tag 17729; LS 94 mm (Photo P. Keith). D: G. margaritaceus, female; Kolobangara, Solomon Islands (Photo C. Lord).
ScienceDex guides
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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.