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2,510 results for “South China”

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zenodo32/100

Fig. 8 in Further undescribed cembranoids from South China Sea soft coral Sarcophyton ehrenbergi: Structural elucidation and biological evaluation

Fig. 8. Application of the modified Mosher's method to 5 and 6. Chemical shift values of ΔδSR [Δ(δS – δR)] are given in ppm. Positive and negative regions are colored blue and red, respectively. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opennotspecifiedFeb 2023View details →
zenodo32/100

Fig. 4 in Further undescribed cembranoids from South China Sea soft coral Sarcophyton ehrenbergi: Structural elucidation and biological evaluation

Fig. 4. the key NOESY (pink arrows, from 1H to 1H) correlations of compounds 1, 2, 5 and 7. (For interpretation of the references to color in this figure legend, the reader is referred to the Web version of this article.)

opennotspecifiedFeb 2023View details →
zenodo32/100

Fig. 6 in Further undescribed cembranoids from South China Sea soft coral Sarcophyton ehrenbergi: Structural elucidation and biological evaluation

Fig. 6. Perspective ORTEP drawings of the X-ray structures of 2 (left) and 3 (right) (displacement ellipsoids are drawn at the 50% probability level).

opennotspecifiedFeb 2023View details →
zenodo32/100

Fig. 7 in Sarcoelegans A-H, eight undescribed cembranes with anti-inflammatory and anti-thrombotic activities from the South China Sea soft coral Sarcophyton elegans

Fig. 7. Anti-thrombotic assays of compounds 2–3. (A) Images of staining intensity of erythrocytes in heart in arachidonic acid (AA)-induced thrombus in zebrafish, treated with sarcoelegans B–C (2–3), using aspirin as positive control. (B) Quantitative analysis of staining intensity of erythrocytes in heart in zebrafish treated with sarcoelegans B–C (2–3) in zebrafish. (C) Images of area of caudal vein thrombosis in arachidonic acid (AA)-induced thrombus in zebrafish, treated with sarcoelegans B–C (2–3), using aspirin as positive control. (D) Quantitative analysis of area of caudal vein thrombosis in zebrafish treated with sarcoelegans B–C (2–3) in zebrafish. #### Indicates that the arachidonic acid model group has a very significant difference compared with the control group (P <0.01). ** indicate that sample groups have significant differences compared with the arachidonic acid model group (P <0.01).

opennotspecifiedMar 2023View details →
zenodo32/100

Fig. 4 in Sarcoelegans A-H, eight undescribed cembranes with anti-inflammatory and anti-thrombotic activities from the South China Sea soft coral Sarcophyton elegans

Fig. 4. ORTEP drawing of compounds 1, 4, 6, and 8. Displacement ellipsoids are drawn at the 50% probability.

opennotspecifiedMar 2023View details →
zenodo32/100

Fig. 6 in Sarcoelegans A-H, eight undescribed cembranes with anti-inflammatory and anti-thrombotic activities from the South China Sea soft coral Sarcophyton elegans

Fig. 6. Anti-inflammatory assays of compounds 1–8. (A) Images of inflammatory sites in CuSO4-induced transgenic fluorescent zebrafish (Tg:zlyz-EGFP) expressing enhanced green fluorescent protein (EGFP) treated with sarcoelegans A–H (1–8), using indomethacin as positive control. (B) Quantitative analysis of macrophages in the region of inflammatory sites in zebrafish treated with sarcoelegans A–H (1–8) in zebrafish at 20 μM #### Indicates that the CuSO4 model group has a very significant difference compared with the control group (P <0.01). ** indicate that sample groups have significant differences compared with the CuSO4 model group (P <0.01). (For interpretation of the references to colour in this figure legend, the reader is referred to the Web version of this article.)

opennotspecifiedMar 2023View details →
zenodo32/100

Inverted S-wave velocity model for "Anomalous radial anisotropy and its implications for upper mantle dynamics beneath South China from multimode surface wave tomography"

<p># Instructions for the South China velocity model dataset from multi-mode surface-wave inversion.</p> <p>&nbsp;</p> <p>1. The detailas can be found at the paper: Tang Q, Sun W, Yoshizawa K, et al. Anomalous radial anisotropy and its implications for upper mantle dynamics beneath South China from multimode surface wave tomography. Journal of Geophysical Research: Solid Earth, 2022, 127(8): e2021JB023485.</p> <p>&nbsp;</p> <p>2. The relative SV-wave and SH-wave velocity models at different depths (from 0 to 300 km) are stored in the &quot;data&quot; foder. Each file follows the name convention: shear_{SV/SH}.{depth}.dat representing SV or SH velocity at a given depth.</p> <p>&nbsp;</p> <p>3. In each velocity file, each line have three columns: longitude (deg) latitude (deg) relative_velocity (%)</p> <p>&nbsp;</p> <p>4. The reference velocity can be found in the two files &quot;SV_velocity&quot; and &quot;SH_velocity&quot;, depth and velocity.</p> <p>&nbsp;</p> <p>5. The relative velocity is calculated from (absolute-reference)/reference*100%. Thus one can have the absolute velocity via absolute = relative * (1+relative/100).</p>

opencc-by-4.0Aug 2022View details →
zenodo32/100

In situ observational data for "Typhoon-associated short-term marine heat waves in the northern South China Sea coastal waters"

<p>The in situ observational data for &quot;Typhoon-associated short-term marine heat waves in the northern South China Sea coastal waters&quot;, which will be submitted to the Journal of GRL</p>

opencc-by-4.0Sep 2023View details →
zenodo32/100

Model files for"Impact of Horizontal Resolution (Submesoscale Permitting vs Mesoscale Resolving) on Ocean Dynamic Features in the South China Sea "

<p>These four files are the model configurations as well as&nbsp; model grids for the SP and MR model mentiond in the manuscript titled with&nbsp;&quot;Impact of Horizontal Resolution (Submesoscale Permitting vs Mesoscale Resolving) on Ocean Dynamic Features in the South China Sea&quot;, which would be potentially published in the Journal of Earth and Space Science. With the model grids and publicly available forcing field data introduced in the MS, it is easy to generate model&nbsp;input files. Finally, with&nbsp;the configuration files (e.g., .h, .in ), one can easily reproduce all the model results.</p>

opencc-by-4.0Aug 2022View details →
zenodo32/100

FIGURE 5 in Three new free-living marine nematode species of Dorylaimopsis (Nematoda Araeolaimida: Comesomatidae) from the South China Sea and the Chukchi Sea

FIGURE 5. Dorylaimopsis boucheri sp. n. A: Male head. B: Anterior body region of male. C: Lateral surface view of male head. D: Cloacal region with spicule, gubernaculum, and precloacal supplements. E: Female tail. Scale bars. A, C, E = 10 µm; B = 50 µm; D = 25 µm.

opennotspecifiedMay 2019View details →
zenodo32/100

FIGURE 7 in Three new free-living marine nematode species of Dorylaimopsis (Nematoda Araeolaimida: Comesomatidae) from the South China Sea and the Chukchi Sea

FIGURE 7. Dorylaimopsis jinyuei sp. n. A: Male head. B: Lateral surface view of male head. C: Anterior body region of female. D: Male tail. Arrow points to the spicule proximal tip with a short central lamina. E: Female tail. Scale bars. A, B, E = 10 µm; C, D = 50 µm.

opennotspecifiedMay 2019View details →
zenodo32/100

FIGURE 9 in Three new free-living marine nematode species of Dorylaimopsis (Nematoda Araeolaimida: Comesomatidae) from the South China Sea and the Chukchi Sea

FIGURE 9. Dorylaimopsis jinyuei sp. n. Light micrographs. A: Male head. B: Lateral surface view of male head. C: Lateral surface view of anterior intestine. D: Vulva region. E: Cloacal region with spicule, gubernaculum, and precloacal supplements. F. Spinneret. Scale bar: A, B, C, F = 10 μm; D, E = 20 μm.

opennotspecifiedMay 2019View details →
zenodo32/100

FIGURE 3 in Three new free-living marine nematode species of Dorylaimopsis (Nematoda Araeolaimida: Comesomatidae) from the South China Sea and the Chukchi Sea

FIGURE 3. Dorylaimopsis longispicula sp. n. Light micrographs. A: Female head. B: Vulva region. C: Lateral surface view of middle body region in female. D: Cloacal region with spicule, gubernaculum, and precloacal supplements. Scale bars. A, B, C = 10 µm; D = 20 µm.

opennotspecifiedMay 2019View details →
zenodo32/100

FIGURE 3 in Onychostoma brevibarba, a new cyprinine fish (Pisces: Teleostei) from the middle Chang Jiang basin in Hunan Province, South China

FIGURE 3 (a) Type locality of O. brevibarba: hill stream with clear water and mixed substrate including sand, gravel and boulders; (b) reservoir into which the hill stream flows.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURE 5 in Onychostoma brevibarba, a new cyprinine fish (Pisces: Teleostei) from the middle Chang Jiang basin in Hunan Province, South China

FIGURE 5 Bayesian (BI) tree inferred from combined genes. Numbers at major internal nodes are Bayesian posterior probability values and bootstrap values for BI/ML tree.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURE 2 in Onychostoma brevibarba, a new cyprinine fish (Pisces: Teleostei) from the middle Chang Jiang basin in Hunan Province, South China

FIGURE 2 Ventral view of the oromandibular structures. (a) O. brevibarba, IHB 2011062588, 86.0 mm SL; (b) O. minnanense, IHB 74V0408, 77.9 mm SL; (c) O. barbatulum, IHB 20070601405, 83.1 mm SL. Abbreviations: rf, rostral fold; rb, rostral barbels; ul, upper lip; pg, postlabial groove; lj, lower jaw; mb, maxillary barbels; ll, lower lip. Scale bars = 5 mm.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURE 1 in Onychostoma brevibarba, a new cyprinine fish (Pisces: Teleostei) from the middle Chang Jiang basin in Hunan Province, South China

FIGURE 1 (a) Onychostoma brevibarba sp. nov., holotype, IHB 2011062587, 86.0 mm SL, Mi Shui in Hengdong County, Hunan Province, China; (b) young individual, IHB 2011051732, 72.8 mm SL; (c) freshly captured specimen; (d) live individual in a stream flowing into a reservoir; photo by E Zhang, May 2011. Scale bars = 1 cm.

opennotspecifiedApr 2018View details →
zenodo32/100

FIGURE 4 in Onychostoma brevibarba, a new cyprinine fish (Pisces: Teleostei) from the middle Chang Jiang basin in Hunan Province, South China

FIGURE 4 Distribution of Onychostoma brevibarba. Black circles indicate sites at which O. brevibarba was captured.

opennotspecifiedApr 2018View details →
ClinicalTrials.gov32/100

Primary Liver Cancer Cohort of South China

ClinicalTrials.gov study NCT03297255. IPD Sharing: Not stated. Countries: 1. Publications: 2.

restrictedIPD-UNDECIDEDFeb 2026View details →
ClinicalTrials.gov32/100

Human Milk Nutrients and Infants' Health Outcomes in South China

ClinicalTrials.gov study NCT05432180. IPD Sharing: NO. Countries: 1. Publications: 1.

closedIPD-NOFeb 2026View details →

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DANDI Archive for NWB datasets

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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.

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Last verified 2026-04-29Open record

OpenNeuro

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openneuro
neuroscienceopenPublished datasets are available on demand over the internet.
Last verified 2026-04-29Open record