Find research datasets worth reusing
Search datasets from major research repositories and use ShareScore to quickly assess how well each record supports discovery, access, and reuse.
79
datasets available to search
ShareScore release 0.9.0
Dataset results
79 results for “South China region”
FIGURE 6 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 6. Micrographs of Henlea sp. A. Clitellar glands (ventral view), bursal slit (black arrow) in vivo. B. Nephridia in VII/ VIII–IX/X (black arrow). C. Sperm funnel in vivo. D. Sperm funnel (black arrow) and nephridium at X/XI (white arrow). E. Mature egg (white arrow) and vas deferens (black arrow). F. Spermathecae. G. Pharyngeal glands. H. Spermatheca (black arrow), ectal glands (white arrow) in vivo. I. Intestinal diverticula in VIII/IX in vivo. Scale bars: A,B,C,D,F,H: 50 µm; E,G,I: 100 µm.
FIGURE 5 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 5. Henlea sp. A. Chaetae at II, III, VI, VII and VIII. B. Brain. C. Nephridium. D. Sperm funnel.
FIGURE 3 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 3. Micrographs of Fridericia bulboides Nielsen & Christensen, 1959 (A, in vivo), Fridericia cusanica Schmelz, 2003 (B, C, fixed), Fridericia perrieri (Vejdovský, 1878) (D, E, fixed), and Fridericia bretscheri Southern, 1907 (F–I, in vivo). Fridericia bulboides: A. Epidermal gland cells (arrows). Fridericia cusanica: B. Pharyngeal glands. C. Spermatheca (arrow). Fridericia perrieri: D. Spermatheca with diverticula (arrows). E. Sperm funnel (arrow). Fridericia bretscheri: F. Spermathecae (arrows). G. Oesophageal appendages. H. Clitellar glands, dorsal view. I. Coelomocytes. Scale bars: H,I: 25µm; A,C,D,E,F,G: 50 µm; B: 100 µm.
FIGURE 2 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 2. Micrographs of Fridericia ratzeli (Eisen, 1872) sensu stricto. A, B. Sperm funnels in vivo. C. Spermatheca. D. Spermatheca; ectal duct, ampulla and diverticula in vivo. E. Clitellar glands, dorsal view in vivo. F. Clitellar glands, dorsal view. G. Oesophageal appendages with branches (black arrow) in vivo, and spermathecal ectal glands (white arrow). H. Subneural glands in XIII, XIV and XV (arrow). I. Pharyngeal glands. J. Epidermal glands cells in anterior segment (arrows) in vivo. K. Subneural gland in XIII in vivo. L. Chaetae in XXII, XXIII. M. Brain. N. Coelomocyte in vivo. Scale bars: I, 200 µm; A,B,C,G,H,M, 100 µm; D,E,F,J,K,L, 50 µm; N, 25 µm.
FIGURE 1 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 1. Fridericia ratzeli (Eisen, 1872) sensu stricto. A. Lateral chaetae at II, III, V, VI. B. Nephridium. C. Spermatheca. D. Brain. E. Oesophageal appendages. F. Sperm funnel.
FIGURE 7 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 7. Micrographs of Buchholzia sp. in vivo. A. Chaetae in IV. B. Intestine diverticulium at VI/VII. C. Pharyngeal glands. D. Oesophageal appendages in IV (black arrows). E. Coelomo-mucocytes (black arrow), lenticytes (white arrow). F. Epidermal gland cells in anterior segment (black arrow). G. Nephridium in VII/VIII. Scale bars: A,E, 10 µm; D,F,G, 25 µm; B,C, 50 µm.
FIGURE 4 in Preliminary taxonomical investigation of soil enchytraeids (Clitellata, Enchytraeidae) from south region of Tibet, China
FIGURE 4. Micrographs of Fridericia peregrinabunda Michaelsen, 1913 (A–F) and Henlea perpusilla Friend, 1911 (G–J). Fridericia peregrinabunda: A. Coelomocytes (black arrows) in vivo. B. Oesophageal appendages with branches (black arrow) in vivo. C. Pharyngeal glands in vivo. D. Head pore (black arrow), brain (white arrow) in vivo. E. Spermathecae of fixed specimen. F. Nephridium (black arrow), coelomo-mucocytes (white arrow) of fixed specimen. Henlea perpusilla: G. Coelomomucocytes (black arrow), intestine widening in VII/VIII (white arrow) in vivo. H. Clitellar glands, dorsal view in vivo. I. Sperm funnels (black arrows) in vivo. J. Abrupt transition between oesophagus and intestine at VII/VIII of fixed specimen. Scale bars: A,H: 25 µm; B,E,F,G,I: 50 µm; C,D,J: 100 µm.
Supplementary material 1 from: Liu S, Hou M, Rao D, Ananjeva NB (2022) Three new species of Diploderma Hallowell, 1861 (Squamata, Agamidae) from the Hengduan Mountain Region, south-western China. ZooKeys 1131: 1-30. https://doi.org/10.3897/zookeys.1131.86644
Uncorrected genetic pairwise distances (p-distances) (%) between species based on the mitochondrial ND2 gene sequences
Back-arc tectonics and plate reconstruction of the Philippine Sea-South China Sea region since the Eocene
<p>This repository contains GPlates plate reconstruction model, CitComS simulation original results and supplementary movies for "<strong>Back-arc tectonics and plate reconstruction of the Philippine Sea-South China Sea region since the Eocene</strong>" as below:</p> <p>1. Liu_etal_GRL_PS_SCS.zip</p> <p>2. Temperature_field_along_sections.zip</p> <p>3. Movie_S1_Plate_motion_since_55_Ma_with_oceanic_crust_age.mp4</p> <p>4. Movie_S2_Plate_motion_since_55_Ma.mp4</p>
FIGURE 61 in Review and contribution to the stoneflies (Insecta: Plecoptera) of Guangxi Zhuang Autonomous Region, China, with new species and new records from South China
FIGURE 61. Distribution of Styloperla wui Chao, 1947 in prefectural cities of Guangxi.
FIGURE 41 in Review and contribution to the stoneflies (Insecta: Plecoptera) of Guangxi Zhuang Autonomous Region, China, with new species and new records from South China
FIGURE 41. Stonefly species richness occurring within six families in Guangxi Province.
Figure 5 from: Hu X, Huang J-Q, Tan J-C, Wu Y-Q, Chen J (2018) Hedychium viridibracteatum X.Hu, a new species from Guangxi Autonomous Region, South China. PhytoKeys 110: 69-79. https://doi.org/10.3897/phytokeys.110.28710
Figure 5 Distribution and flowering of Hedychiumviridibracteatum X.Hu, sp. nov. and the related species H.villosumvar.tenuiflorum and H.villosumvar.villosum.
Figure 3 from: Hu X, Huang J-Q, Tan J-C, Wu Y-Q, Chen J (2018) Hedychium viridibracteatum X.Hu, a new species from Guangxi Autonomous Region, South China. PhytoKeys 110: 69-79. https://doi.org/10.3897/phytokeys.110.28710
Figure 3 Hedychiumviridibracteatum X.Hu sp. nov. A habit (growing on rocks) B rachis and bracts (pubescent) C ligule (glabrous) D inflorescence at anthesis E leaf blade surface (adaxial view) F leaf blade surface (abaxial view) G rhizome H portions of inflorescence (2–4 flowers per bract).
Figure 2 from: Hu X, Huang J-Q, Tan J-C, Wu Y-Q, Chen J (2018) Hedychium viridibracteatum X.Hu, a new species from Guangxi Autonomous Region, South China. PhytoKeys 110: 69-79. https://doi.org/10.3897/phytokeys.110.28710
Figure 2 Hedychiumviridibracteatum X.Hu, sp. nov., flowers and their parts: A bract B bracteole C ovary D calyx tube E floral tube F corolla lobe G lateral staminodes H labellum I labellum claw J filament K anther.
Figure 4 from: Hu X, Huang J-Q, Tan J-C, Wu Y-Q, Chen J (2018) Hedychium viridibracteatum X.Hu, a new species from Guangxi Autonomous Region, South China. PhytoKeys 110: 69-79. https://doi.org/10.3897/phytokeys.110.28710
Figure 4 Histogram of relative DNA content of nuclei isolated from the leaves of the new plant and related Hedychium species. AH.coronarium (control) BH.viridibracteatumCH.villosumvar.tenuiflorumDH.villosumvar.villosum.
Figure 1 from: Hu X, Huang J-Q, Tan J-C, Wu Y-Q, Chen J (2018) Hedychium viridibracteatum X.Hu, a new species from Guangxi Autonomous Region, South China. PhytoKeys 110: 69-79. https://doi.org/10.3897/phytokeys.110.28710
Figure 1 Hedychiumviridibracteatum X.Hu, sp. nov., holotype, A upper leaves and inflorescence B flower C bract D ovary and glands E calyx tube F floral tube with calyx tube wrapped outside G corolla lobe H lateral staminodes I labellum J stamen K anther L stigma. Drawings Y. X. Liu.
An Interdependence Analysis of the Trade Network of Key Exporting Countries: Focusing on the Asia-Pacific Region (U.S., China, India, Japan, and South Korea)
Open the record for dataset details and reuse information.
FIGURE 39 in Review and contribution to the stoneflies (Insecta: Plecoptera) of Guangxi Zhuang Autonomous Region, China, with new species and new records from South China
FIGURE 39. Styloperla jiangxiensis Yang & Yang, 1990 (female). a. Terminalia, ventral view. b. Vaginal sclerite, dorsal view.
FIGURE 15 in Review and contribution to the stoneflies (Insecta: Plecoptera) of Guangxi Zhuang Autonomous Region, China, with new species and new records from South China
FIGURE 15. Sinacroneuria wui (Yang & Yang, 1998) (male). a. Aedeagus, dorsal view. b. Basal half of aedeagus, dorsal view. c. Aedeagus, ventral view. d. Apical half of aedeagus, ventral view. e. Aedeagus, lateral view. f. Basal half of aedeagus, lateral view.
ScienceDex guides
Understand access before you commit
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.