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2,402 results for “East Asia”
Figs 37–43. Aedeagus. 37 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Figs 37–43. Aedeagus. 37 – Indostola kaengkrachanensis sp. nov. 38 – I. pulchella Medvedev, 1991. 39 – Pseudochillus (Pseudochillus) bangaloreanus (Kaszab, 1981). 40 – Pseudochillus (P.) aalbui sp. nov. 41 – Pseudochillus (Micropseudochillus) palawanus sp. nov. 42 – P.(M.) thailandicus sp. nov. 43 – P.(M.) indochinensis sp. nov. Scale bars: 0.5 mm (Figs 37, 38, 40–42), 1 mm (Fig. 39, 43).
Figs 27–36 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Figs 27–36. Lateral view of head with eyes. 27 – Indostola pulchella Medvedev, 1991. 28 – I. kaengkrachanensis sp. nov. 29 – Indochillus cristatus Koch, 1941. 30 – Pseudochillus (Pseudochillus) bangaloreanus (Kaszab, 1981). 31 – P. (P.) aalbui sp. nov. 32 – P. (Kaszabochillus) andamanus (Kaszab, 1981). 33 – P. (K.) helferi sp. nov. 34 – Pseudochillus (Micropseudochillus) palawanus sp. nov. 35 – P.(M.) thailandicus sp. nov. 36 – P.(M.) indochinensis sp. nov.
Fig 44 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Fig 44. Distribution of species of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus in South and South East Asia.
Figs 5–9. Dorsal view. 5 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Figs 5–9. Dorsal view. 5 – Indochillus cristatus Koch, 1941, holotype, India (Karnakata). 6 – Pseudochillus (Pseudochillus) bangaloreanus (Kaszab, 1981), holotype ♂, India (Bangalore). 7 – P. (P.) aalbui sp. nov., holotype ♂, India (Tamil Nadu). 8 – P.(Kaszabochillus) andamanus (Kaszab, 1981), paratype ♀, India (Andaman Islands). 9 – P. (K.) helferi sp. nov, holotype ♀, Myanmar (Tennasserim). Scale bar = 4 mm.
Figs 10–16. 10–12 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Figs 10–16. 10–12 – dorsal view: 10 – Pseudochillus (Micropseudochillus) palawanus sp. nov., holotype♂, Philippines (Palawan); 11 – P. (M.) thailandicus sp. nov., holotype ♂, Thailand.; 12 – P. (M.) indochinensis sp. nov., paratype ♀, Vietnam. 13 – P.(M.) indochinensis sp. nov., tooth on clypeus; 14–15 – humeral corner: 14 – P.(Kaszabochillus) helferi sp. nov.; 15 – P.(Pseudochillus) bangaloreanus (Kaszab, 1981). 16 – P.(P.) bangaloreanus (Kaszab, 1981), punctures on epipleura. Scale bar = 4 mm (Figs 10–12).
Figs 1–4. Dorsal view. 1 in A review of the genera Indostola, Tagenostola, Indochillus, Pseudethas, and Pseudochillus gen. nov. in South East Asia (Coleoptera: Tenebrionidae: Stenosini)
Figs 1–4. Dorsal view. 1 – Indostola pulchella Medvedev, 1991, holotype ♀, India (West Bengal). 2 – Indostola kaengkrachanensis sp. nov., holotype ♂, Thailand. 3 – Tagenostola albovillosa Koch, 1940, Vietnam. 4 – Pseudethas thailandicus Fouquè, 2008, holotype ♂, Thailand. Scale bar = 4 mm.
Barn Swallows (Hirundo rustica) in East Asia show strong tolerance against nest mites
<p>Hosts defend against parasites through two main strategies: resistance and tolerance. These two strategies have different influences on the parasite load of the host and so have variable effects on the fitness of parasites. In this study, we investigated the strategy used by the Barn Swallow (Hirundo <em>rustica</em>) to defend against a haematophagous mite (<em>Dermanyssus</em> <em>hirundinis</em>) in East Asia. For the first time, we found Barn Swallows were parasitized by <em>D</em>. <em>hirundinis</em> in Asia and, in north-eastern China, over 60% of broods were parasitized. We examined whether swallows with better body condition or the males with more extravagant sexually selected traits (longer tail streamers or redder ventral plumage) showed stronger resistance or tolerance to these parasites. The results showed that males with more extravagant sexual ornaments had weaker resistance (heavier brood mite load) than males with less extravagant traits; however, the heavier mite load was likely to be a by-product of larger brood size. Moreover, the Barn Swallow population showed strong tolerance against the parasite, i.e., the brood mite load did not affect brood size or nestling body mass. It is worth noting that male swallows with redder breast plumage showed weaker tolerance (lower seasonal reproductive success) than other males. Further, we conducted experimental ectoparasite manipulations in 46 Barn Swallow nests to verify the potential effect of these parasites on the body condition of nestlings. Neither the body mass nor the hemoglobin concentration differed between the designed groups; however, the hemoglobin concentration of nestlings decreased with mite load. We concluded that the Barn Swallow population in East Asia used the tolerance strategy, rather than resistance to defend against nest mites, and the ectoparasitic mite did not appear to be a strong selective factor for reproductive success owing to the strong tolerance of the studied Barn Swallow population. </p>
Tropical cyclones facilitate recovery of forest leaf area from dry spells in East Asia
<p>This online repository copies the source code and the download link of the input data for the research work of analyzing forest leaf area change due to the TC activities in the west pacific ocean basin. </p> <p><strong>TC Track data, mask, climate reanalysis, leaf area, ERA5 (wind speed, surface pressure data), and SPEI dataset: </strong></p> <p><a href="http://YYCdb.synology.me:5833/sharing/YizTR8HPR">http://YYCdb.synology.me:5833/sharing/YizTR8HPR</a></p> <p>password:bg-2022-115</p> <p>File size: 373G</p> <p><strong>The path for downloading the source code/script for analyzing the LAI changes:</strong></p> <p><a href="http://YYCdb.synology.me:5833/sharing/JC2AGt9Kh">http://YYCdb.synology.me:5833/sharing/JC2AGt9Kh</a></p> <p>password:bg-2022-115</p> <p>File size: 880M</p> <p><strong>Data table for all events used in this study:</strong></p> <p><a href="http://YYCdb.synology.me:5833/sharing/MqA4YFBHk">http://YYCdb.synology.me:5833/sharing/MqA4YFBHk</a></p> <p>password:bg-2022-115</p> <p>Filesize:824K</p>
FIGURE 282 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 282. Pseudopoda zuoi Zhang, Jäger & Liu, spec. nov., A–B Female habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
FIGURE 279 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 279. Pseudopoda zhengi Zhang, Jäger & Liu, spec. nov., holotype, female: A. Epigyne, ventral; B. Schematic course of IDS, dorsal; C. Vulva, dorsal. Scale bars: A–C: 0.5 mm.
FIGURE 280 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 280. Pseudopoda zhengi Zhang, Jäger & Liu, spec. nov., A–B Female habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
FIGURE 278 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 278. Pseudopoda zhaoae Zhang, Jäger & Liu, spec. nov., A–B Female habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
FIGURE 273 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 273. Pseudopoda yingjingensis Zhang, Jäger & Liu, spec. nov., A–B Female habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
FIGURE 272 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 272. Pseudopoda yingjingensis Zhang, Jäger & Liu, spec. nov., holotype, female: A. Epigyne, ventral; B. Schematic course of IDS, dorsal; C. Vulva, dorsal. Scale bars: A–C: 0.5 mm.
FIGURE 276 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 276. Pseudopoda yunfengensis Zhang, Jäger & Liu, spec. nov., A–B Male habitus (A. dorsal; B. ventral); C–D Female habitus (C. dorsal; D. ventral). Scale bars: A–D: 2 mm.
FIGURE 275 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 275. Pseudopoda yunfengensis Zhang, Jäger & Liu, spec. nov., paratype, female: A. Epigyne, ventral; B. Schematic course of IDS, dorsal; C. Vulva, dorsal. Scale bars: A–C: 0.5 mm.
FIGURE 274 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 274. Pseudopoda yunfengensis Zhang, Jäger & Liu, spec. nov., holotype, male: A–C Left male palp (A. prolateral; B. ventral; C. retrolateral). Scale bars: A–C: 0.5 mm.
FIGURE 269 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 269. Pseudopoda yangtaiensis Zhang, Jäger & Liu, spec. nov., A–B Male habitus (A. dorsal; B. ventral). Scale bars: A–B: 2 mm.
FIGURE 270 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 270. Pseudopoda yilanensis Zhang, Jäger & Liu, spec. nov., holotype, female: A. Epigyne, ventral; B. Schematic course of IDS, dorsal; C. Vulva, dorsal. Scale bars: A–C: 0.5 mm.
FIGURE 268 in A taxonomic revision of the spider genus Pseudopoda Jäger, 2000 (Araneae: Sparassidae) from East, South and Southeast Asia
FIGURE 268. Pseudopoda yangtaiensis Zhang, Jäger & Liu, spec. nov., holotype, male: A–C Left male palp (A. prolateral; B. ventral; C. retrolateral). Scale bars: A–C: 0.5 mm.
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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.