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309 results for “Yellow Sea”
Fig. 5 in Biodiversity variability of macrobenthic in the Yellow Sea and East China Sea between 2001 and 2011
Fig. 5. Horizontal distributions of macrobenthic abundance in August 2011 (ind/m2).
Data for: Mammalian predators and vegetated nesting habitat drive reduced protected area nesting success of Kentish plovers, Yellow Sea region, China
<p><span>Protected areas provide essential habitats for wildlife by conserving natural and semi-natural habitats and reducing human disturbance. However, whether breeding birds vulnerable to nest predation can benefit from strict land management in the protected area is unclear. Here, we compare the nesting performance of two groups of a ground-nesting shorebird, the Kentish plover (<em>Charadrius alexandrinus</em>), in the protected area (Liaohekou Natural Reserve, hereinafter PA) and the control non-protected area (Non-PA) around the Liaohekou Natural Reserve, in the north of the Yellow Sea, China, and identify which environmental factors, such as nesting habitat and nest materials, influence the daily nest survival rate (DSR). We found similar nesting habitats in both study areas, dominated by bare land or <em>Suaeda salsa</em> grassland. However, DSR was lower in PA (0.91 ± 0.01) than in Non-PA (0.97 ± 0.01). Kentish plovers nesting in areas with vegetation cover experienced lower DSR than in bare lands in both areas, and nests built with materials of <em>S. salsa</em> sticks had the lowest DSR in the bare land. Data from infrared cameras confirmed relatively higher predator abundances and nest predation rates by nocturnal mammals, such as Eurasian badgers (<em>Meles meles</em>), in PA than in Non-PA, and this pattern was especially evident for plover nests located in <em>S. sals</em>a grassland. Our results suggest that Liaohekou Natural Reserve protected area may not necessarily provide safe nesting sites for Kentish plovers due to the abundance of generalist mammal nest predators. </span><span>However, the PA includes about 80% of the nests from both locations. This means the contribution of the total number of successful nests continues to be much higher within PA, with the benefit for the species that this brings in terms of conservation. </span><span>The variation and mechanisms underlying differences in the nest predator communities of PA and non-PA deserve further study.</span></p>
Aerosol indirect-effect-derived PM2.5 contributions during the development of convective clouds over the Yellow Sea in July of 2017
<p>Meteorological processes are investigated during the development of deep convective clouds over the Yellow Sea inside a quasi-stationary rainy front in the East Asian region. WRF-Chem simulations were conducted to assess the aerosol-indirect-effect (AIE)-derived PM<sub>2.5</sub> contributions to the cloud microphysical process in deep convective clouds and the associated precipitation.</p> <p>In our dataset, you can find output of WRF-Chem baseline simulations (BASE) and other sensitivity simulated outputs (CONTROL). Furthermore, model variables of precipitations, cloud top temperature (CTT), surface-level pressure (SLP), convective available potential energy (CAPE), and hydrometer mixing ratios of cloud water (qcloud), raindrops (qrain), and ice (qice) can be found in these zip files.</p> <p>If you have any difficulty downloading these datasets, please feel free to contact the first author, kimhsung@gmail.com. All references and acknowledgments can be found in our paper</p>
Data for: Mammalian predators and vegetated nesting habitat drive reduced protected area nesting success of Kentish plovers, Yellow Sea region, China
Open the record for dataset details and reuse information.
PLATE VII. Species of the low elevation deserts in China (A-D) and northern Caspian Basin in Russia (E-F). (A) P. przewalskii-3; (B) habitat of A, Shapatou (foreground), Yellow River, Gobi Desert, Ningxia; (C) P. salenskyi-1; (D) habitat of C, near Jimsar, Junggar Depression, Xinjiang; (E) P. guttatus; and (F) habitat of E, west side of Caspian Sea in Dagestan. in A molecular phylogenetic hypothesis for the Asian agamid lizard genus Phrynocephalus reveals discrete biogeographic clades implicated by plate tectonics
PLATE VII. Species of the low elevation deserts in China (A-D) and northern Caspian Basin in Russia (E-F). (A) P. przewalskii-3; (B) habitat of A, Shapatou (foreground), Yellow River, Gobi Desert, Ningxia; (C) P. salenskyi-1; (D) habitat of C, near Jimsar, Junggar Depression, Xinjiang; (E) P. guttatus; and (F) habitat of E, west side of Caspian Sea in Dagestan.
FIGURE 11 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 11. Bodotria (Bodotria) pseudomaculosa sp. nov., holotype, adult male, 6.12 mm: A, habitus, lateral view; B, carapace and pereon, dorsal view; C, antenna 1; D, antenna 2; E, left mandible; F, right mandible; G, maxilla 1. Scale bars = 1.0 mm (A, B), 0.1 mm (C–F), 0.05 mm (G).
FIGURE 13 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 13. Bodotria (Bodotria) pseudomaculosa sp. nov., holotype, adult male, 6.12 mm: A, pereopod 2; B, pereopod 3; C, pereopod 4; D, pereopod 5; E, pleotelson. Scale bars = 0.3 mm (E), 0.2 mm (A–D).
FIGURE 12 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 12. Bodotria (Bodotria) pseudomaculosa sp. nov., holotype, adult male, 6.12 mm: A, maxilla 2; B, maxilliped 1; C, maxilliped 2; D, maxilliped 3; E, pereopod 1. Scale bars = 0.2 mm (D, E), 0.1 mm (A–C).
FIGURE 10 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 10. Bodotria (Bodotria) pseudomaculosa sp. nov., holotype, adult male, 6.12 mm: A, lateral view; B, carapace and pereon, dorsal view. Scale bars = 1.0 mm (A), 0.5 mm (B).
FIGURE 9 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 9. Bodotria (Bodotria) hwanghaensis sp. nov., holotype, adult male, 5.15 mm: A, pereopod 2; B, pereopod 3; C, pereopod 4; D, pereopod 5; E, pleotelson. Scale bars = 0.2 mm (A–E).
FIGURE 1 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 1. Map showing collecting locations for three new species belonging to the genus Bodotria in Korea: ■, Bodotria (Atlantobodotria) incarinata sp. nov.; ●, Bodotria (Bodotria) hwanghaensis sp. nov.; ▲, Bodotria (Bodotria) pseudomaculosa sp. nov.
FIGURE 4 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 4. Bodotria (Atlantobodotria) incarinata sp. nov., holotype, adult male, 3.55 mm: A, maxilla 2; B, maxilliped 1; C, maxilliped 2; D, maxilliped 3; E, pereopod 1; F, pereopod 2. Scale bars = 0.1 mm (D–F), 0.05 mm (A–C).
FIGURE 8 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 8. Bodotria (Bodotria) hwanghaensis sp. nov., holotype, adult male, 5.15 mm: A, maxilla 2; B, maxilliped 1; C, maxilliped 2; D, maxilliped 3; E, pereopod 1. Scale bars = 0.2 mm (D, E), 0.1 mm (B, C), 0.05 mm (A).
FIGURE 7 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 7. Bodotria (Bodotria) hwanghaensis sp. nov., holotype, adult male, 5.15 mm: A, habitus, lateral view; B, carapace and pereon, dorsal view; C, antenna 1; D, antenna 2; E, left mandible; F, right mandible; G, maxilla 1. Scale bars = 1.0 mm (A, B), 0.1 mm (C–F), 0.05 mm (G).
FIGURE 6 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 6. Bodotria (Bodotria) hwanghaensis sp. nov., holotype, adult male, 5.15 mm: A, lateral view; B, carapace and pereon, dorsal view. Scale bars = 0.5 mm (A, B).
FIGURE 5 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 5. Bodotria (Atlantobodotria) incarinata sp. nov., holotype, adult male, 3.55 mm: A, pereopod 3; B, pereopod 4; C, pereopod 5; D, pleotelson. Scale bars = 0.2 mm (D), 0.1 mm (A–C).
FIGURE 3 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 3. Bodotria (Atlantobodotria) incarinata sp. nov., holotype, adult male, 3.55 mm: A, habitus, lateral view; B, carapace and pereon, dorsal view; C, antenna 1; D, antenna 2; E, left mandible; F, right mandible; G, maxilla 1. Scale bars = 0.5 mm (A, B), 0.1 mm (D), 0.05 mm (C, E–G).
FIGURE 2 in Three new species of the genus Bodotria (Crustacea: Cumacea: Bodotriidae) from the Yellow Sea in Korea
FIGURE 2. Bodotria (Atlantobodotria) incarinata sp. nov., holotype, adult male, 3.55 mm: lateral view. Scale bar = 0.5 mm.
FIGURE 7 in New species of Thoonchus (Enoplida, Enchelidiidae) from the Yellow Sea and redescription of T. giganticus Belogurova et al., 1986
FIGURE 7. Map of distribution of species of the genus Thoonchus. 1—T. ferox, 2—T. inermis, 3—T. giganticus, 4—T. longisetosus, 5—T. covidus sp. nov.
FIGURE 3 in New species of Thoonchus (Enoplida, Enchelidiidae) from the Yellow Sea and redescription of T. giganticus Belogurova et al., 1986
FIGURE 3. Female of Thoonchus covidus sp. nov. Light microscopy (DIC). A. General view. B. Anterior end (buccal cavity). C. Anterior end (amphid). D. Tail. E. Gutter-shaped process extruded out of vulva. Abbreviation: a—amphid. Scale bars: A—200 µm; B, C, D, E—10 µm.
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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.