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1,135 results for “Hainan”
Mangrove Crab Sampling Data in Dongzhaigang National Nature Reserve, Haikou, Hainan Province, China
<p>This dataset contains the results of a study on mangrove crabs conducted in four seasons (Summer, SU; Autumn, AU; Winter, WI; Spring, SP) of 2020 and 2021. The samples were collected in the Dongzhaigang National Nature Reserve, Haikou, Hainan Province, China, at five sites: Sanjiang (SJ), Tashi (TS), Shanweitou (SWT), Luodou (LD), and Puqian (PQ). The primary focus is on crab species belonging to the superfamilies Ocypodoidea (ghost crabs), Grapsoidea (square crabs), and Portunoidea (swimming crabs).</p> <p>Sampling was conducted using net trapping, with three replicate plots set up for each habitat type at each site. Each plot was sampled continuously for three days. Vegetation information was recorded using dominant species as representatives, and water environmental information was collected using a WTW instrument. The parameters measured include total dissolved solids (TDS) (mg/L), dissolved oxygen (DO) (mg/L), salinity (SAL) (‰), water temperature (T) (℃), and pH. Finally, the longitude and latitude in the WGS84 coordinate system and Cartesian coordinates for each plot were recorded.</p> <p>The dataset fields are as follows:</p> <ul> <li>date: Date of sampling</li> <li>year: Year of sampling</li> <li>month: Month of sampling</li> <li>day: Day of sampling</li> <li>site: Sampling location, including TS, SJ, SWT, LD, PQ</li> <li>habitat: Habitat type, including tidal channels, tidal flats, and several vegetation types represented by mangrove trees such as Avicennia marina, Rhizophora stylosa, Bruguiera sexangular, Sonneratia apetala, and Ceriops tagal.</li> <li>plotname: Plot name</li> <li>species: Species name, as per the World Register of Marine Species (<a href="https://www.marinespecies.org/">https://www.marinespecies.org</a>)</li> <li>superfamily: Superfamily, as per the World Register of Marine Species (<a href="https://www.marinespecies.org/">https://www.marinespecies.org</a>)</li> <li>season: Season, including Summer (SU), Autumn (AU), Winter (WI), and Spring (SP)</li> <li>cname: Plot division by season, site, and habitat</li> <li>fullname: Plot division by season, site, habitat, and plot sequence number</li> <li>pname: Plot division by site, habitat, and plot sequence number</li> <li>TDS: Water total dissolved solids (mg/L)</li> <li>pH: Water pH</li> <li>DO: Water dissolved oxygen (mg/L)</li> <li>T: Water temperature (℃)</li> <li>SAL: Water salinity (‰)</li> <li>longitude: Longitude in WGS84 coordinate system</li> <li>latitude: Latitude in WGS84 coordinate system</li> <li>x: Cartesian coordinate x</li> <li>y: Cartesian coordinate y</li> </ul> <p>We thank Chengpu Jiang, Liangjun Wei and other colleagues for their assistance during the field samplings. Thanks also for the experimental conditions and sampling support provided by Hainan Dongzhaigang National Nature Reserve Authority.</p>
Figure 2 in Four new earthworm species of the genus Amynthas Kinberg (Oligochaeta: Megascolecidae) from the island of Hainan and Guangdong Province, China
Figure 2. Amynthas dilatatus Qiu and Jiang sp. nov; (A) Ventral view of holotype, scale bar 2 mm; (B) spermathecae of holotype, scale bar 1 mm; (C) prostate gland of holotype; (D) male pore region of one paratype.
Magmatic System of the Hainan Hotspot Revealed by Ambient Noise Tomography
<p>The datasets consists of three parts:</p> <p>1.Cross-correlation Functions Data(all_CCFs.zip):<br>Format:<br> Lon (station A) Lat (station A) Elevation (A)<br> Lon (station B) Lat (station B) Elevation (B)<br> Time (t=0) GAB(t) GBA(t)<br> Time (t=dt) GAB(t) GBA(t) <br> Time (t=2dt) GAB(t) GBA(t)</p> <p><br>2. Rayleigh Wave Phase Dispersion Data (CDisp.zip):<br>Format:<br> Lon (station A) Lat (station A)<br> Lon (station B) Lat (station B)<br> Period (s) Vs (km/s)</p> <p>3.S-Velocity Model:<br>Format:<br> Longitude Latitude Depth Absolute_velocity Average_velocity Relative_velocity</p>
Figs 17–19. 17 in Leiodidae (Coleoptera) of the Hainan Island with new faunistic records from China and with notes on the unique body modifications in the genus Agathidium
Figs 17–19. 17 – metatibia; 18 – metatarsus; 19 – aedeagus dorsally. 17, 18 – Agathidium (Macroceble) apiforme sp. nov.; 19 – Dermatohomoeus pennatus sp. nov.
Figs 13–16. 13, 15, 16 in Leiodidae (Coleoptera) of the Hainan Island with new faunistic records from China and with notes on the unique body modifications in the genus Agathidium
Figs 13–16. 13, 15, 16 – head dorsally; 14 – head laterally. 13 – Agathidium (Agathidium) pilulum sp. nov.; 14, 16 – Agathidium (Macroceble) cornigerum sp. nov.; 15 – Agathidium (Macroceble) apiforme sp. nov.
Figs 9–12. 9, 10 in Leiodidae (Coleoptera) of the Hainan Island with new faunistic records from China and with notes on the unique body modifications in the genus Agathidium
Figs 9–12. 9, 10 – aedeagus laterally and tip of aedeagus dorsally. 11 – lateral view of body. 12 – spermatheca. 9–11 – Agathidium (Macroceble) apiforme sp. nov.; 12 – Dermatohomoeus pennatus sp. nov. Scale bars in Figs 9, 10 = 0.2 mm; 11 = 0.5 mm; 12 = 0.1 mm.
Figs 21–24 in A new species of the genus Blaiseus Fleutiaux (Coleoptera: Elateridae, Cardiophorinae) from Hainan, China
Figs 21–24. Male Blaiseus hainanensis sp. n. 21 – tergite VIII, dorsal view; 22 – ventrite VIII, ventral view; 23 – ventrite and tergite IX, ventral view; 24 – tergite and ventrite IX, dorsal view.
Fig. 5 in Revision of the taxonomic status of Amathuxidia morishitai from Hainan, China (Lepidoptera: Nymphalidae)
Fig. 5. Distribution map of Amathuxidia amythaon (Doubleday, 1847) subspecies. Type localities are represented by the letter T (type locality of A. a. annamensis Talbot, 1932 was not given specifically). The localities of the specimens sequenced are marked on the map. Source from DOUBLEDAY (1847), HONRATH (1884), FRUHsTORFER (1911), EVANs (1932), TALBOT (1932), INAYOsHI (2023) and KUNTE et al. (2023).
Fig. 6 in Revision of the taxonomic status of Amathuxidia morishitai from Hainan, China (Lepidoptera: Nymphalidae)
Fig. 6. Phylogenetic tree of the tribe Amathusiini inferred from ML analysis of COI with bootstrap support values (SH-aLRT /ultrafast bootstrap).
Fig. 4 in Revision of the taxonomic status of Amathuxidia morishitai from Hainan, China (Lepidoptera: Nymphalidae)
Fig. 4. Genitalia of Amathuxidia amythaon morishitai Chou & Gu, 1994, stat. nov. Abbreviations: ds – dorsal view, le – lateral left view, lr – lateral right view, po – posterior view, vs – ventral view.
Fig. 2 in Revision of the taxonomic status of Amathuxidia morishitai from Hainan, China (Lepidoptera: Nymphalidae)
Fig. 2. Hindwing of Amathuxidia amythaon (Doubleday, 1847) subspecies.A – the sex brands. B – the white band along the outer edge of the postdiscal line.
Fig. 1 in Revision of the taxonomic status of Amathuxidia morishitai from Hainan, China (Lepidoptera: Nymphalidae)
Fig. 1. Habitus of Amathuxidia amythaon (Doubleday, 1847) subspecies. TLM-01 and TLM-02 – individuals from contact zones with intermediate phenotypes.
Fig. 6 in Pollination activity of Elaeidobius kamerunicus (Coleoptera: Curculionoidea) on oil palm on Hainan island
Fig. 6. The number of Elaeidobius kamerunicus pollinating weevils per spikelet at various hours of the 3rd day of anthesis of male inflorescences of the African oil palm. Each data point in the figure is presented as the mean ± SE.
Fig. 5 in Pollination activity of Elaeidobius kamerunicus (Coleoptera: Curculionoidea) on oil palm on Hainan island
Fig. 5. The number of Elaeidobius kamerunicus pollinating weevils visiting male inflorescences at various hours of the 3rd day of anthesis of male inflorescences of the African oil palm. Each data point in the figure is presented as the mean ± SE.
Fig. 2 in Pollination activity of Elaeidobius kamerunicus (Coleoptera: Curculionoidea) on oil palm on Hainan island
Fig. 2. Number of Elaeidobius kamerunicus pollinating weevils that emerged per spikelet of the inflorescences of the African oil palm each month during anthesis. Each data point is presented as the mean ± SE.
Fig. 1. Sticky trap applied for catching Elaeidobius kamerunicus, pollinating weevils. The trap was 21.7 in Pollination activity of Elaeidobius kamerunicus (Coleoptera: Curculionoidea) on oil palm on Hainan island
Fig. 1. Sticky trap applied for catching Elaeidobius kamerunicus, pollinating weevils. The trap was 21.7 cm in diameter and 26.3 cm in height. It was folded into a cylinder surrounding an Elaeis guineensis inflorescence with the sticky gel–coated surface on the outside.
Fig. 7 in Pollination activity of Elaeidobius kamerunicus (Coleoptera: Curculionoidea) on oil palm on Hainan island
Fig. 7. The number of Elaeidobius kamerunicus pollinating weevils visiting female inflorescences on each of the 6 d of the anthesis period of the female inflorescence of the African oil palm. Each data point in the figure is presented as the mean ± SE.
Figs 19–21. Ommatius spp., holotype. 19. O in Three new species of the genus Ommatius Wiedemann from Hainan,China (Diptera: Asilidae)
Figs 19–21. Ommatius spp., holotype. 19. O. corolla sp. nov. 20. O. huoae sp. nov. 21. O. jianfenglingensis sp. nov.
Figs 14-18 in Three new species of the genus Ommatius Wiedemann from Hainan,China (Diptera: Asilidae)
Figs 14-18. Ommatius jianfenglingensis sp. nov., male genitalia. 14–15. Epandrium and cercus, dorsal and lateral views. 16–17. Hypandrium and gonocoxites, ventral and lateral views. 18. Aedeagus, dorsal view. Scale bars = 0.1 mm.
Figs 7–13 in Three new species of the genus Ommatius Wiedemann from Hainan,China (Diptera: Asilidae)
Figs 7–13. Ommatius huoae sp. nov., male genitalia. 7–8. Epandrium and cercus, dorsal and lateral views. 9–10. Hypandrium and gonocoxites, ventral and lateral views. 11–13. Aedeagus, ventral, dorsal and lateral views. Scale bars = 0.1 mm.
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Allen Brain Atlas
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International Brain Laboratory public data
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OpenNeuro
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