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2,256 results for “Southern China”
Fig. 7 in Phylogeography and Genetic Structure of the Bush Cricket (Orthoptera, Tettigoniidae) in Southern China.
Fig. 7. Mismatch distributions (left) and Bayesian skyline plots (right) for lineages I, IV, and V of D. fissa based on mitochondrial data.
Fig. 6 in Phylogeography and Genetic Structure of the Bush Cricket (Orthoptera, Tettigoniidae) in Southern China.
Fig. 6. The mitochondrial haplotype network of concatenated sequences. The dotted box represents the five lineages based on divergence time analysis.
Fig. 7 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 7. Elaphropeza guenardi sp. nov., holotype, ♂, habitus, RBINS (leg. C. Taylor and U. Chang; photo A. Samoh).
Fig. 2. Elaphropeza calcarifera Bezzi, 1907 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 2. Elaphropeza calcarifera Bezzi, 1907, ♂, habitus, RBINS (leg. C. Taylor and U. Chang; photo A. Samoh).
Fig. 4 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 4. Elaphropeza furcatella sp. nov., holotype, ♂, habitus, RBINS (leg. C. Taylor and U. Chang; photo A. Samoh). Barcode reference JP1F.
Fig. 6 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 6. Elaphropeza guenardi sp. nov., holotype, male terminalia (leg. C. Taylor and U. Chang; RBINS). A. Right epandrial lamella. B. Epandrium dorsal view. C. Left surstylus. Barcode reference JP1A. Scale bar: 0.1 mm.
Fig. 3. Elaphropeza calcarifera Bezzi, 1907 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 3. Elaphropeza calcarifera Bezzi, 1907, male terminalia, RBINS (leg. C. Taylor and U. Chang). A. Right epandrial lamella. B. Epandrium, dorsal view. C. Left surstylus. Scale bar: 0.1 mm.
Fig. 16. Maximum Composite Likelihood model for 29 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 16. Maximum Composite Likelihood model for 29 species of Elaphropeza based on COI barcodes from specimens from Singapore and Hong Kong.
Fig. 5 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 5. Elaphropeza furcatella sp. nov., male terminalia, RBINS (leg. C. Taylor and U. Chang). A. Right epandrial lamella. B. Epandrium, dorsal view. C. Left surstylus. D. Tip of fused cerci. Scale bar: 0.1 mm.
Fig. 15. Elaphropeza xanthocephala Bezzi, 1912 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 15. Elaphropeza xanthocephala Bezzi, 1912, male terminalia, RBINS (leg. C. Taylor and U. Chang). A. Right epandrial lamella. B. Epandrium, dorsal view. C. Left surstylus. Scale bars: 0.1 mm.
Fig. 11. A–D in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 11. A–D. Elaphropeza hongshulin sp. nov., holotype, RBINS (leg. C. Taylor and U. Chang). A. Right epandrial lamella. B. Tip of right surstylus, lateral view. C. Epandrium dorsal view. D. Left surstylus. — E. E. malayensis Shamshev & Grootaert, 2007, right epandrial lamella (after Grootaert & Shamshev 2012). — F. E. lowi Grootaert & Shamshev, 2012, right epandrial lamella (after Grootaert & Shamshev 2012). Scale bar: 0.1 mm.
Fig. 14. Elaphropeza xanthocephala Bezzi, 1912 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 14. Elaphropeza xanthocephala Bezzi, 1912, ♂, habitus, RBINS (leg. C. Taylor and U. Chang; photo C. Locatelli).
Fig. 9 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 9. Elaphropeza hongkongensis sp. nov., holotype, male terminalia, RBINS (leg. C. Taylor and U. Chang). A. Right epandrial lamella. B. Epandrium dorsal view. C. Left surstylus. Scale bar: 0.1 mm.
Fig. 8 in Species turnover between the northern and southern part of the South China Sea in the Elaphropeza Macquart mangrove fly communities of Hong Kong and Singapore (Insecta: Diptera: Hybotidae)
Fig. 8. Elaphropeza hongkongensis sp. nov., holotype, ♂, habitus, RBINS (leg. C. Taylor and U. Chang; photo A. Samoh).
Figure 4 in Genetic structure and population dynamics of the silver pheasant (Lophura nycthemera) in southern China
Figure 4. Bayesian tree based on mitochondrial haplotypes (1053 bp, selected model of HKY+I+G). It exhibits the phylogenetic relationships of silver pheasant, and three species (L. hatinhensis, L. leucomelanos, and L. swinhoii) are noticeable outgroups. Above branches there are numbers indicating Bayesian posterior probabilities, whereas below branches there are bootstrap values produced by ML. Each colored line represents a geographic population, while the line in black represents the shared haplotype.
Figure 3 in Genetic structure and population dynamics of the silver pheasant (Lophura nycthemera) in southern China
Figure 3. mtDNA MJN for silver pheasant. Circle size represents proportion of haplotype. Circles with single color indicate a private haplotype, whereas circles with two or more colors represent a shared haplotype.
Figure 1 in Genetic structure and population dynamics of the silver pheasant (Lophura nycthemera) in southern China
Figure 1. According to geodistance and topographic characters, we sorted sampling sites into geographic populations. The sampling sites including 7 provinces: Sichuan, Anhui, Jiangxi, Fujian, Zhejiang, Hubei, and Hunan. The abbreviation are as follows: Sichuan (SC), Anhui (AH), Jiangxi (JX), Fujian (FJ), Zhejiang (ZJ), Hubei (HB), Hunan (HN).
Figure 2 in Genetic structure and population dynamics of the silver pheasant (Lophura nycthemera) in southern China
Figure 2. Bayesian skyline plot of whole population of silver pheasant. The expansion time was computed by tau = 2µkt. The solid line means the estimated average effective population size and the dashed line represents 95% confidence interval.
Figure 4 in Three new species of the Clubiona corticalis-group from southern China (Araneae: Clubionidae)
Figure 4. Clubiona dakong sp. nov., female holotype. A–C, epigyne, ventral view (A intact; B cleared; C cleared and embedded in Arabic gum); D–E, vulva, dorsal view (D cleared; E cleared and embedded in Arabic gum). F–G, habitus (F dorsal view; G ventral view). Abbreviations: A, epigynal atrium; BS, bursa; CO, copulatory opening; FD, fertilization duct; SB, spermathecal base; SH, spermathecal head; SP, spermatheca. Scale bars = 0.2 mm (equal for A–E); 1 mm (equal for F–G).
Figure 5 in Three new species of the Clubiona corticalis-group from southern China (Araneae: Clubionidae)
Figure 5. Clubiona yanzhii sp. nov., female holotype. A–C, epigyne, ventral view (A intact; B cleared; C cleared and embedded in Arabic gum); D–E, vulva, dorsal view (D cleared; E cleared and embedded in Arabic gum). F–G, habitus (F dorsal view; G ventral view). Abbreviations: A, epigynal atrium; BS, bursa; CO, copulatory opening; FD, fertilization duct; SB, spermathecal base; SH, spermathecal head; SP, spermatheca. Scale bars = 0.2 mm (equal for A–E); 1 mm (equal for F–G).
ScienceDex guides
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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)
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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.