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599 results for “Guangdong”
Fig. 11. Cybister ventralis Sharp, 1882 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 11. Cybister ventralis Sharp, 1882 (J♀, Pusa, Bihar, India). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 10 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 10. Cybister tripunctatus lateralis (Fabricius, 1798) (J, Guangzhou, Guangdong).A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 8 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 8. Cybister limbatus (Fabricius, 1775) (J, Guangzhou, Guangdong). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 9 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 9. Cybister rugosus (W. S. Macleay, 1825) (J, Fengkai County, Guangdong). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 6 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 6. Cybister lateralimarginalis torquatus (Fischer von Waldheim, 1829) (J, Shule County, Xinjiang).A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E
Fig. 4 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 4. Cybister guerini Aubé, 1838 (J, Guangzhou, Guangdong). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 7. Cybister lewisianus Sharp, 1873 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 7. Cybister lewisianus Sharp, 1873 (J, Guangzhou, Guangdong). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 18 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 18. Habitats of Cybister in China. A–C – lake, Shanxi (C. chinensis); D–E – lowland marsh, Shenzhen, Guangdong (C. rugosus, C. tripunctatus lateralis and C. sugillatus); F – temporary pond in a valley, Danxiashan Mt., Guangdong (C. tripunctatus lateralis and C. limbatus); G – natural pond, Lankeshan Mt., Zhejiang (C. rugosus and C. brevis); H – terraced fields pools, Lvchun County, Yunnan (C. convexus and C. sugillatus).
Fig. 3. Cybister fumatus Sharp, 1882 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 3. Cybister fumatus Sharp, 1882 (J♀, Laos). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 5 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 5. Cybister laevis Falkenström, 1936 (holotype ♀). A – habitus in dorsal view; B – habitus in ventral view; C – labels. Scale bar: 5.0 mm.
Fig. 2. Cybister chinensis Motschulsky, 1854 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 2. Cybister chinensis Motschulsky, 1854 (J, Heihe, Heilongjiang). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Fig. 1 in Review of the genus Cybister in China, with description of a new species from Guangdong (Coleoptera: Dytiscidae)
Fig. 1. Cybister bengalensis Aubé, 1838 (J, Ku Sia, Taiwan). A – habitus in dorsal view; B – habitus in ventral view; C – median lobe of aedeagus in lateral view; D – median lobe of aedeagus in ventral view; E – paramere. Scale bars: 5.0 mm (A, B), 1.0 mm (C–E).
Figure 3. – A in First record of Odontobutis haifengensis (Gobioidei, Odontobutidae) from the Rongjiang River, Eastern Guangdong, China
Figure 3. – A: Regularly arranged occipital scales of O. haifengensis; B: Cephalic lateral line system of O. haifengensis. Solid arrows = sensory canal; dotted arrows = sensory rows of papilla.
Figure 1. – A in First record of Odontobutis haifengensis (Gobioidei, Odontobutidae) from the Rongjiang River, Eastern Guangdong, China
Figure 1. – A: Geographic distribution of Odontobutis species in China, based on the literature. ▲ = O. haifengensis; C = O. potamophila; ● = O. sinensis; ■ = O. yaluensis. B: Geographical distribution of known captures of O. haifengensis. ▲ = records by Chen and Zheng (1985), Wu (1991) and Wu and Zhong (2009); Δ = new records from the present study. Numbers indicate different river drainages separated by mountains.
Figure 2 in First record of Odontobutis haifengensis (Gobioidei, Odontobutidae) from the Rongjiang River, Eastern Guangdong, China
Figure 2. – Two specimens of O. haifengensis captured in Rongjiang River. The first specimen was caught on 8 August 2016 (A), the second specimen was caught on 17 October 2016, 64.7 mm SL (B).
Hemiboea shimentaiensis (Gesneriaceae), a new species from northern Guangdong, China
<p><em>Hemiboea shimentaiensis</em> (Gesneriaceae), a new species from northern Guangdong, China, is described and illustrated. It is most similar to <em>H. gamosepala</em>, <em>H. rubribracteata </em>and <em>H. malipoensis</em> in the nearly white corolla, which appears in a few species of <em>Hemiboea</em>, and nearly glabrous inner base of the corolla tube. It can be easily distinguished from the latter three species by the stoloniferous habit, distinct silvery veins, glabrous corolla except for a ring of hairs inside, anther coherent along ventral face when young, but cohering apically at maturity, three separate staminodes with lateral ones resembling deformed anthers, and with few sterile pollen grains inside, to antheroids at the tips of the staminodes. The life cycle and fluctuations in the population are unknown and need further study, the conservation status of <em>H. shimentaiensis</em> was not assessed.</p>
Supplemental text for: Wuchiapingian (Lopingian, Late Permian) brachiopod fauna from Guangdong Province, southeastern China: systematics and contribution to the Lopingian recovery
<p><span>A most diversified Wuchiapingian brachiopod fauna, which contains 57 species in 28 genera, is described from the Shuizhutang Formation at Liannan section, Guangdong province, southeastern China. Four new species are proposed. Among these 57 species, many of them have been fully described in recent papers and thus are only illustrated in the manuscript and described herein.</span></p>
A study of the spatial correlation network structure of urban innovation in Guangdong
<p>Based on the modified gravity model, a spatial correlation network of innovation was constructed among cities in Guangdong, China. Social network analysis was employed to explore their evolution characteristics during 2009–2017. The results indicate that the innovation output of prefecture-level cities in Guangdong Province shows both spatial correlations and differences. Their network shows lower density, higher efficiency, and rigid stratification properties. Based on small cluster analysis, these cities are classified into four blocks, the members of which changed. In 2017, four well-defined subgroups formed, which are "bidirectional spillover plate", "main spillover plate", "net beneficial plate", and "agent plate". With this network, the geographical characteristics of the innovation capabilities and differences among the cities in Guangdong, as well as the different positions and roles of each city in the associated network, can be properly understood. Consequently, the transmission mechanisms and development strategies of innovation in Guangdong Province can be better explored.</p>
Citation Tone of Lugang dialect in Chaonan District of Shantou City in Guangdong Province, China
<p>Citation Tone of Lugang dialect in Chaonan District of Shantou City in Guangdong Province, China </p>
Air quality data from the article "Typhoon-associated air quality over the Guangdong–Hong Kong–Macao Greater Bay Area, China: machine-learning-based prediction and assessment"
<p>This dataset consists of 26 files. The descriptions of the files are as follows:</p> <ul> <li>aqi_TY.csv, pm25_TY.csv, pm10_TY.csv, so2_TY.csv, no2_TY.csv and o3_TY.csv are the observed values of AQI and concentrations of PM<sub>2.5</sub>, PM<sub>10</sub>, SO<sub>2</sub>, NO<sub>2</sub> and O<sub>3</sub> of 36 monitoring stations used in model establish stage on TY days. The time range is June 2014 to December 2020.</li> <li>aqi_NTY.csv, pm25_NTY.csv, pm10_NTY.csv, so2_NTY.csv, no2_NTY.csv and o3_NTY.csv are the observed values of AQI and concentrations of PM<sub>2.5</sub>, PM<sub>10</sub>, SO<sub>2</sub>, NO<sub>2</sub> and O<sub>3</sub> of 36 monitoring stations used in model establish stage on NTY days. The time range is June 2014 to December 2020.</li> <li>station_info.csv is the detailed information of the 36 monitoring stations used in model establish stage, including station number, city, longitude and latitude.</li> <li>aqi_TY_testing.csv, pm25_TY_testing.csv, pm10_TY_testing.csv, so2_TY_testing.csv, no2_TY_testing.csv and o3_TY_testing.csv are the observed values of AQI and concentrations of PM<sub>2.5</sub>, PM<sub>10</sub>, SO<sub>2</sub>, NO<sub>2</sub> and O<sub>3</sub> of 3 monitoring stations used for testing the model on TY days. The time range is June 2014 to December 2020.</li> <li>aqi_NTY_testing.csv, pm25_NTY_testing.csv, pm10_NTY_testing.csv, so2_NTY_testing.csv, no2_NTY_testing.csv and o3_NTY_testing.csv are the observed values of AQI and concentrations of PM<sub>2.5</sub>, PM<sub>10</sub>, SO<sub>2</sub>, NO<sub>2</sub> and O<sub>3</sub> of 3 monitoring stations used for testing the model on NTY days. The time range is June 2014 to December 2020.</li> <li>sta_testing.csv is the detailed information of the 3 monitoring stations used for testing the model, including station number, city, longitude and latitude.</li> </ul>
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.
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.