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85 results for “China Coast”
FIGURE 7. Marphysa orientalis holotype USNM 20144 in Two new species of Marphysa Quatrefages, 1865 (Polychaeta: Eunicida: Eunicidae) from northern coast of China and redescription for Marphysa orientalis Treadwell, 1936
FIGURE 7. Marphysa orientalis holotype USNM 20144 (light microscopy images) A. Anterior dorsal view of holotype. B. Lateral view of anterior parapodia. C. Lateral view of branchiae from middle region. D. Maxillae I & II, ventral view. E. Maxillae II & III, lateral view. F. Maxillary apparatus, dorsal view. Abbreviations: I, II, III, IV- maxillae I, II, III, IV Scale bars: A, F = 2 mm; B, C = 1 mm; D, E = 0.5 mm.
Impact of upwelling on phytoplankton blooms and hypoxia along the Chinese coast in the East China Sea
<p>This study evaluates the rarely observed phenomenon of the simultaneous occurrences of phytoplankton blooms, hypoxia, and upwelling along the Zhejiang coast in the East China Sea. Results show that the upwelling uplifted bottom water to 5–10 m below the surface. In the upwelling region, phytoplankton blooms (Chl a = 10.9 μg L−1) occurred and hypoxia or low-oxygen appeared below the surface water. High concentrations of nitrate and phosphate were regenerated in the hypoxic regions, corresponding with mean values (± SD) of 16.9 (± 1.5) and 0.90 (± 0.14) μM, respectively. The upwelling expanded the region of hypoxic water, which nearly reached the surface, thereby increasing the threat to marine life. In addition to fluvial nutrients, the upwelling of water with high nutrient levels, especially phosphates, can enhance phytoplankton blooms. The results suggest that hypoxia can become more severe due to further decomposition of bloom-derived organic matter after blooms crash.</p>
Data from: Accounting for heterogeneity when estimating stopover duration, timing and population size of red knots along the Luannan Coast of Bohai Bay, China
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Impact of upwelling on phytoplankton blooms and hypoxia along the Chinese coast in the East China Sea
Open the record for dataset details and reuse information.
Figure 4 from: Xiao J-G, Yu Z-S, Song N, Gao T-X (2021) Description of a new species, Sillago nigrofasciata sp. nov. (Perciformes, Sillaginidae) from the southern coast of China. ZooKeys 1011: 85-100. https://doi.org/10.3897/zookeys.1011.57302
Figure 4 Neighbor-joining (NJ) tree for cytochrome oxidase subunit I (COI) gene sequences of eight species of Sillago. The NJ tree was constructed under the K2P model using Sillaginodes punctata as the outgroup. Bootstrap support values of > 70% from 1000 replicates are shown.
Figure 3 from: Xiao J-G, Yu Z-S, Song N, Gao T-X (2021) Description of a new species, Sillago nigrofasciata sp. nov. (Perciformes, Sillaginidae) from the southern coast of China. ZooKeys 1011: 85-100. https://doi.org/10.3897/zookeys.1011.57302
Figure 3 Swim bladders of nine Sillago species AS. nigrofasciata sp. nov. BS. sihamaCS. shaoiDS. sinicaES. indicaFS. parvisquamisGS. intermedius (McKay 1992) HS. caudicula (Kaga et al. 2010) IS. suezensis (sketch based on Golani et al. 2014). AE, anterior extension; ASAE, anterior sub-extension of anterolateral extension; PSAE, posterior sub-extension of anterolateral extension; LP, lateral processes; DLP, duct-like process; PE, posterior extension. Black arrows indicate differences between S. nigrofasciata sp. nov. and S. sihama.
Figure 2 from: Xiao J-G, Yu Z-S, Song N, Gao T-X (2021) Description of a new species, Sillago nigrofasciata sp. nov. (Perciformes, Sillaginidae) from the southern coast of China. ZooKeys 1011: 85-100. https://doi.org/10.3897/zookeys.1011.57302
Figure 2 ASillago nigrofasciata sp. nov., OUC_FEL178001, holotype, 151.2 mm SL, Fuding, China, BSillago sihama, ZJOU_FEBL021131, 131.0 mm SL, Zhangzhou, China.
Figure 1 from: Xiao J-G, Yu Z-S, Song N, Gao T-X (2021) Description of a new species, Sillago nigrofasciata sp. nov. (Perciformes, Sillaginidae) from the southern coast of China. ZooKeys 1011: 85-100. https://doi.org/10.3897/zookeys.1011.57302
Figure 1 Sampling sites and corresponding sample sizes (represented by circle size and Arabic numerals) of Sillago nigrofasciata sp. nov. HN, Hainan Island; TW, Taiwan Island; FD, Fuding; XM, Xiamen; ST, Shantou; ZH, Zhuhai; ZJ, Zhanjiang; BH, Beihai; FCG, Fangchenggang; DZ, Danzhou; HK, Haikou; CY, Chiayi; CH, Changhua.
Figure 2 from: Li L, Nong Q-Z, Chen C-P, Li Y-H, Lai J-X (2024) Two new diatom species of the genus Gomphonemopsis (Bacillariophyceae) from the coast of China and two new combinations for the genus. PhytoKeys 239: 255-266. https://doi.org/10.3897/phytokeys.239.114018
Figure 2 Gomphonemopsis gaoiA–I light micrographs (I phase contrast), note the Voigt faults on the secondary side (black arrowheads) J–P scanning electron micrographs J external view of an entire valve, iconotype specimen K external detail of the apex, showing the slit-like pores L external detail of the central area M internal view of an entire valve N internal detail of the apex, showing the slit-like pores O internal detail of the central area P valvocopula with two rows of subcircular poroids. Scale bars: 10 μm (A–I); 5 μm (J, M); 1 μm (K, L, N–P).
Figure 1 from: Li L, Nong Q-Z, Chen C-P, Li Y-H, Lai J-X (2024) Two new diatom species of the genus Gomphonemopsis (Bacillariophyceae) from the coast of China and two new combinations for the genus. PhytoKeys 239: 255-266. https://doi.org/10.3897/phytokeys.239.114018
Figure 1 Gomphonemopsis nanaA–J light micrographs (differential interference contrast, DIC) K–P scanning electron micrographs K external view of an entire valve with hymenes covering areolae, iconotype specimen L external view of an entire valve without hymenes covering areolae, note the girdle bands perforated with two rows of pores (white arrowhead) M external detail of the central area, note the presence of two areolae on the primary side (white arrows) N external detail of the foot pole O internal view of an entire valve P internal detail of the central area. Scale bars: 5 μm (A–J); 1 μm (K–O); 0.5 μm (P).
Figure 8 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 8 LM micrographs of Luticola inserata (Hustedt) D.G.Mann in size diminution series (A–R). Scale bar: 10 µm.
Figure 9 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 9 SEM micrographs of Luticola inserata (Hustedt) D.G.Mann. External view of valve (A, B). Detailed external views showing proximal raphe endings with irregular shallow grooves C distal raphe ending, areolae D stigma opening E internal view of valve F detailed internal view showing proximal raphe endings and stigma opening G and distal raphe ending and hymenate structure H open copulae I. Scale bars: 10 µm (A, F, I), 5 µm (B–D, G), 3 µm (E), 4 µm (H).
Figure 6 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 6 LM pictures of Luticola belawanensis Levkov & Metzeltin in size diminution series (A–M). External view of frustule (N, O). Internal view of frustule (P, Q). Internal details of: raphe branch with distal raphe end and hymen structure R proximal raphe endings and longitudinal channel S proximal raphe endings and stigma opening T. Scale bars: 10 µm (A-M, P), 5 µm (N, O, Q, S), 3 µm (R, T).
Figure 5 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 5 LM micrographs of Luticola halongiana Witkowski, M.Rybak, H-D.Nguyen & D-V.Nguyen sp. nov. in size diminution series (A–Z). Holotype specimen – black frame I external view of frustule (AA–AC). Internal view of frustule (AD). Detailed external close-ups showing distal raphe ending (AE), proximal raphe endings with small rounded grooves and opening of stigma (AF). Detailed internal close-up showing distal and proximal raphe endings, hymen structure and stigma opening (AG). Scale bars: 10 µm (A-Z), 5 µm (AA, AB, AC, AD), 3 µm (AE, AG), 1 µm (AF).
Figure 4 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 4 SEM pictures of Luticola cribriareolata M.Rybak, Witkowski, Risjani & Yunianta sp. nov. External valve view (A–C, E–G), External view with cribrated mantle areolae C internal valve view (D, H–J). External details of distal raphe ending and areolae E proximal raphe endings with shallow grooves, and ghost areolae F proximal raphe endings with shallow grooves and stigma opening G internal details of raphe branch with distal raphe end and irregular hymenate structure H proximal raphe endings and longitudinal channel I proximal raphe endings and stigma opening J. Scale bars: 10 µm (A, C, D), 5 µm (B), 4 µm (E, I, J), 3 µm (F), 2 µm (G, H).
Figure 7 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 7 LM micrographs of Luticola celebesica Levkov, Metzeltin & Pavlov in size diminution series (A–G). Scale bar: 10 µm.
Figure 12 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 12 LM micrographs of Luticola tropica Levkov, Metzeltin & Pavlov in size diminution series (A–T) and isolated open copula U external view of valve (V, W) Detailed external views showing distal raphe ending X stigma opening Y proximal raphe endings with thread-like grooves (Y, Z) and areolae structure (X–Z). Internal view of valve AA detailed internal close-ups showing distal raphe ending AB proximal raphe endings and stigma opening AC. Scale bars: 10 µm (A–U), 5 µm (V, W, AA), 4 µm (X, Y, AB, AC), 3 µm (Z).
Figure 3 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 3 SEM micrographs of Luticola orientalis M.Rybak, Peszek, JP.Zhang & Witkowski sp. nov. External valve view (A–C; E-G), Internal valve view (D; H–J). Detailed view of showing external view of stigma opening E distal F and proximal G raphe endings. Detailed close-ups showing internal silica flap on longitudinal channel H distal raphe endings I Detailed view of proximal raphe endings and stigma opening (J). Scale bars: 5 µm (A–D), 1 µm (E, G, I, J), 2 µm (F, H).
Figure 2 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 2 LM micrographs of size diminution series of Luticola orientalis M.Rybak, Peszek, JP.Zhang & Witkowski sp. nov. (A–AH) and Luticola cribriareolata M.Rybak, Witkowski, Risjani & Yunianta sp. nov. (AI–BM). Holotype specimen of Luticola orientalis sp. nov. – black frame (O). Holotype specimen of Luticola cribriareolata sp. nov. – black frame (AS). Scale bar: 10 µm.
Figure 10 from: Rybak M, Witkowski A, Peszek L, Kociolek JP, Risjani Y, Nguyen DH, Zhang J, Yunianta, Nguyen VD, Gastineau R, Duong TT, Rosa P, Meleder V (2021) Marine and brackish Luticola D.G.Mann (Bacillariophyta) species from the Java Sea and South China Sea coasts with the description of three new species. PhytoKeys 183: 115-142. https://doi.org/10.3897/phytokeys.183.71049
Figure 10 LM micrographs of Luticola seposita (Hustedt) D.G.Mann in size diminution series (A–R). Scale bar: 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.