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736 results for “East China”
FIGURES 5, 6. Stenus fengyangshanus. 5 in Three new species of the Stenus cephalotes group fom Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 5, 6. Stenus fengyangshanus. 5 habitus in dorsal view 6 habitus in ventral view. Scale bars: 1mm.
FIGURES 3, 4. Stenus communicatus. 3 in Three new species of the Stenus cephalotes group fom Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 3, 4. Stenus communicatus. 3 habitus in dorsal view 4 habitus in ventral view. Scale bars: 1mm.
FIGURES 13–18. Stenus communicatus. 13 male sternite VIII 14 male sternite IX 15, 16 aedeagus 17 female sternite VIII 18 in Three new species of the Stenus cephalotes group fom Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 13–18. Stenus communicatus. 13 male sternite VIII 14 male sternite IX 15, 16 aedeagus 17 female sternite VIII 18 valvifers and spermatheca. Scale bars: 0.25mm.
FIGURE 1 in Checklist of oribatid mites (Acari, Oribatida) of the Russian Far East and Northeast of China
FIGURE 1. Map of sampling sites in Russian Far East and North-East of China (pink solid line refers to the border of the broadleaved coniferous forests):
FIGURES 1, 2. Stenus qingliangfengus. 1 in Three new species of the Stenus cephalotes group fom Zhejiang, East China (Coleoptera, Staphylinidae)
FIGURES 1, 2. Stenus qingliangfengus. 1 habitus in dorsal view 2 habitus in ventral view. Scale bars: 1mm.
FIGURE 1 in Cocculina delphinicula sp. nov., a new cocculinid species from whale bone in the East China Sea (Gastropoda: Cocculiniformia)
FIGURE 1. Samples of Cocculina delphinicula sp. nov. in situ on dolphin skull. A. dolphin skull, 48×33 cm; B. close-up of rectangle 1; C. close-up of rectangle 2.
FIGURE 2 in Cocculina delphinicula sp. nov., a new cocculinid species from whale bone in the East China Sea (Gastropoda: Cocculiniformia)
FIGURE 2. Shells of Cocculina delphinicula sp. nov. A. Dorsal, and B. lateral view of holotype, 4.9 mm, MBM285103, scale bar=10 mm; C, D. Microsculpture of shell near margin; E. Dorsal, and F. lateral view of protoconch; G, H. Microsculpture of protoconch.
FIGURE 3 in Cocculina delphinicula sp. nov., a new cocculinid species from whale bone in the East China Sea (Gastropoda: Cocculiniformia)
FIGURE 3. Ventral view of soft part of Cocculina delphinicula sp. nov., holotype MBM285103. Abbreviations. (co) copulatory organ; (ept) epipodial tentacle; (flw) lateral wall of foot; (mm) mantle margin; (o) oral; (ol) oral lappet; (ps) pedal sole.
FIGURE 4 in Cocculina delphinicula sp. nov., a new cocculinid species from whale bone in the East China Sea (Gastropoda: Cocculiniformia)
FIGURE 4. Radular of holotype of Cocculina delphinicula sp. nov., MBM285103. A. Dorsal view of intact radular segment; B. Enlargement of central region; C. Marginal portion, showing marginal teeth, scale bar=100 µm; D. Inner marginal teeth, scale bar=50 µm; E. Outer marginal teeth, scale bar=10 µm.
FIGURE 2 in Two new species of Xyalidae (Monhysterida, Nematoda) from the East China Sea
FIGURE 2. Daptonema donghaiensis sp. nov. A. Lateral view of male anterior end, showing buccal cavity and transparent cell; B. Lateral view of male anterior end; C. Lateral view of male posterior body, showing spicules and gubernaculums; D. Entire view of female body, showing vulva. Scales: A–C=20 µm, D=50 µm.
FIGURE 4 in Two new species of Xyalidae (Monhysterida, Nematoda) from the East China Sea
FIGURE 4. Cobbia heterospicula sp. nov. A. Lateral view of male anterior end, showing buccal cavity and amphids; B. Lateral view of male posterior body, showing tail; C. Lateral view of male anterior end, showing pharyngeal region; D. Entire view of female body, showing vulva; E. Lateral view of spicules and gubernaculums. Scales: A=10 µm, B=50 µm, C=30 µm, D=50 µm, E=20µm.
FIGURE 1 in Two new species of Xyalidae (Monhysterida, Nematoda) from the East China Sea
FIGURE 1. Daptonema donghaineisis sp. nov. A. Lateral view of male anterior portion, showing buccal cavity; B. Lateral view of male anterior end, showing amphid and transparent cell; C. Lateral view of male posterior portion, showing spicules; D. Lateral view of male posterior portion, showing gubernaculums. Scales: A–D=20 µm.
FIGURE 3 in Two new species of Xyalidae (Monhysterida, Nematoda) from the East China Sea
FIGURE 3. Cobbia heterospicula sp. nov. A. Lateral view of male anterior end, showing buccal cavity; B. Lateral view of male anterior end, showing cephalic seta and amphid; C. Lateral view of male posterior portion, showing spicules; D. Lateral view of male posterior portion, showing gubernaculums. Scales: A–D=20 µm.
Profile distribution of pH at 31N in the East China Sea Shelf from 2000 to 2016 year
<p>A monthly pH<sub>T</sub> in the East China Sea for the period 2001-2016 was obtained using the monthly temperature, salinity, dissolved oxygen, nitrate, phosphate and silicate from the FVCOM model system and the spatiotemporal resolution of pH<sub>T</sub> is determined by the FVCOM model system: 1-10 km in the horizontal, 10 depth levels (0-100m) in the vertical, and 12 months.</p>
FIGURE 3 in Perspiria boucheri sp. nov. (Nematoda, Desmodorida) from the East China Sea
FIGURE 3. Perspiria boucheri sp. nov. (A), (B) reproductive system of female, showing ovary, eggs and vulva. (Scales: A, B = 20 μm)
FIGURES 2–16 in Epitypification and emendation of Olifantiella pseudobiremis, an epizoic diatom from the East China Sea Okinawa Trough
FIGURES 2–16. Olifantiella pseudobiremis (2–4. LM; 5–7. TEM; 8–16. SEM). 2. One cell with chloroplast. 3, 4. Cleaned frustules, epitype here designated. 5. Morphology of the entire valve. 6. Marginal channel showing hymenes. 7. View of the process opening and the inflated central raphe endings. 8. External view of the entire valve. 9. External detail of the terminal raphe ending, each fenestrula closed by a granular velum except for a small round pore. 10. External detail of the process opening and the inflated central raphe endings. 11. Internal view of the entire valve showing the floor of the marginal channel covered with hymenes. 12. Corroded valve showing the silica frame on the floor of the marginal channel. 13. Internal detail of the apex with terminal raphe ending. 14, 15. Internal detail of the central area with a paired buciniportulae and a hemispherical siliceous wart in between the central raphe endings. 16. Girdle view showing corroded fenestrulae on the mantles and blurry puncta on the cingular bands. Scale bars in Figs 2–4 = 5 μm; Figs 5, 8, 11, 12 = 1 μm; Figs 6, 7 = 0.2 μm; Figs 9, 10, 13, 15, 16 = 0.5 μm; Fig. 14 = 0.25 μm.
China's Greener Production Reduces East-to-West Pollution Transfers and Alleviates Environmental-Economic Inequalities
<p>The data contains 1. Pro-andCon-base_APE_Value added (the production- and consumption-based APE and value added in 2007, 2012, 2017, and the change); 2. f_d (the production- and consumption-based emission intensity (<em>f</em>) and value added intensity (<em>d</em>) in 2007, 2012, 2017); 3. REI_REIC (the REI index in 2007 and 2017, and REIC index); 4. ape_flow2007 (the APE flows in 2007); 5. ape_flow2012 (the APE flows in 2012); 6. ape_flow2017 (the APE flows in 2017); 7. ape_flowchange (the change of the APE flows from 2007 to 2017); 8. va_flow2007 (the value added flows in 2007); 9. va_flow2012 (the value added flows in 2012); 10. va_flow2017 (the value added flows in 2017); 11. va_flowchange (the change of the value added flows from 2007 to 2017);</p>
Data from: Expressions of nitrate transporter genes reveal different nitrogen statuses of dominant diatom groups in the southern East China Sea
In this study, the mRNA levels of the Nrt2 nitrate transporter gene were used as a molecular indicator of nitrogen status in two dominant diatom groups, Skeletonema and Chaetoceros, which inhabit the southern East China Sea (ECS). To accurately interpret the abundance of Nrt2 transcripts in situ, maximum and minimum expression levels were determined under conditions of nitrogen deprivation and ammonium addition, respectively. In August 2010, Nrt2 transcript levels in Skeletonema at the inner shelf region exhibited a mean of 111 mmole/(mole EFL); at the mid-shelf region, the mean Nrt2 mRNA levels were 298 mmole/(mole EFL), which was very close to the maximum levels observed under nitrogen starvation. By contrast, the Nrt2 transcript levels in Chaetoceros were low at all of the shelf locations, except at one station in the mid-shelf region. The cross-shelf mean was 2.86 mmole/(mole EFL), which was similar to the expression levels observed in cultured Chaetoceros under conditions of sufficient ammonium. Similar expression patterns were observed in diatoms in the southern ECS in June 2011, but the Nrt2 transcript levels in Skeletonema at the inner shelf region were reduced to a mean of 28.6 mmole/(mole EFL). Regression analysis indicated that cell abundance and Nrt2 expression were closely related to the nutricline depth in the coastward half of the southern ECS for Skeletonema but not for Chaetoceros. These results indicate that the evaluated species differ in nitrogen status, which may reflect their evolutionary strategies to survive in a fluctuating marine environment.
Figure 3 in Redescription of Pseudacanthocanthopsis secunda (Yamaguti and Yamasu, 1960) (Copepoda: Chondracanthidae) parasitic on marine fishes from the Seto Inland Sea, Japan and the East China Sea off Japan and Korea
Figure 3. Pseudacanthocanthopsis secunda (Yamaguti and Yamasu, 1960), adult male. (A) Habitus, dorsal; (B) same, lateral; (C) genito-abdomen, ventral; (D) left antennule (arrowhead indicates aesthetasc), dorsal; (E) left antenna, posterior; (F) right mandible, ventral; (G) right maxillule, posterior; (H) right maxilla, posterior; (I) right maxilliped, lateral. Scale bars: A, B = 100 µm; C = 50 µm; D, I = 20 µm; E, H = 10 µm; F, G = 5 µm.
Figure 1 in Redescription of Pseudacanthocanthopsis secunda (Yamaguti and Yamasu, 1960) (Copepoda: Chondracanthidae) parasitic on marine fishes from the Seto Inland Sea, Japan and the East China Sea off Japan and Korea
Figure 1. Pseudacanthocanthopsis secunda (Yamaguti and Yamasu, 1960), adult female. (A) Habitus, dorsal; (B) same, ventral; (C) genito-abdomen, ventral; (D) left antennule, including enlarged view of distal end, ventral. Scale bars: A, B = 300 µm; C = 50 µm; D = 100 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.