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2,402 results for “East Asia”

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zenodo28/100

Figure 13 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 13. Nipponbathynella wanjuensis sp. nov. (♂: holotype). (A) Thoracopod IV (frontal); (B) thoracopod V (frontal); (C) thoracopod VI (frontal). Scale bar = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 16 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 16. Nipponbathynella shigaensis sp. nov. (♂: holotype). (A) Thoracopod I (frontal); (B) thoracopod II (frontal); (C) thoracopod III (frontal); (D) thoracopod IV (frontal). Scale bar = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 11 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 11. Nipponbathynella wanjuensis sp. nov. (♂: holotype). (A) General habitus; (B) antennule (dorsal); (C) antenna (dorsal); (D) labrum (ventral); (E) mandible (ventral); (F) maxillule (dorsal). Scale bars = 0.05 mm (unless otherwise specified).

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 14 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 14. Nipponbathynella wanjuensis sp. nov. (♂: holotype). (A) Thoracopod VII (frontal); (B) thoracopod VIII (lateral); (C) Uropod (dorsal); (D) furcal ramus (lateral); (E) pleotelson, uropod and furcal ramus. Scale bars = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 7 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 7. Nipponbathynella donggangensis sp. nov. (♀: holotype). (A) Maxillule (ventral); (B) maxilla (ventro-lateral); (C) maxilla (ventral); (D) thoracopod I (frontal); (E) thoracopod II (frontal). Scale bars = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 5 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 5. Nipponbathynella leesookyungae sp. nov. (♂: holotype). (A) Uropod (dorsal); (B) pleotelson and furcal rami (dorsal). Scale bar = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 15 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 15. Nipponbathynella shigaensis sp. nov. (♂: holotype). (A) general habitus; (B) antennule (dorsal); (C) antenna (dorsal); (D) labrum (ventral); (E) mandible (ventral); (F) maxillule (dorsal); (G) maxilla (dorsal). Scale bars = 0.05 mm (unless otherwise specified).

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 6 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 6. Nipponbathynella donggangensis sp. nov. (♀: holotype). (A) general habitus; (B) antennule (dorsal); (C) antenna (dorsal); (D) labrum (ventral); (E) mandible (ventral). Scale bars = 0.05 mm (unless otherwise specified).

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 4 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 4. Nipponbathynella leesookyungae sp. nov. (♂: holotype). (A) Thoracopod VIII (ventral); (B) thoracopod VIII (latero-external). Scale bar = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Figure 3 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 3. Nipponbathynella leesookyungae sp. nov. (♂: holotype, ♀: allotype). (A) Thoracopod IV ♂ (frontal); (B) thoracopod V ♂ (frontal); (C) thoracopod VI ♂ (frontal). (D) Thoracopod VII ♂ (frontal); (E) thoracopod VIII ♀ (ventral). Scale bars = 0.05 mm.

opencc-by-4.0Mar 2015View details →
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Figure 2 in Redefinition of Nipponbathynella based on the four new species from East Asia (Crustacea: Bathynellacea: Parabathynellidae)

Figure 2. Nipponbathynella leesookyungae sp. nov. (♂: holotype). (A) Maxilla (dorsal); (B) thoracopod I (frontal); (C) thoracopod II (frontal); (D) thoracopod III (frontal). Scale bars = 0.05 mm.

opencc-by-4.0Mar 2015View details →
zenodo28/100

Genomic insights into the formation of human populations in East Asia

<p>The genotypes of&nbsp;383 present-day individuals from 46 populations indigenous to China (n=337) and Nepal (n=46) using the Affymetrix Human Origins array.</p>

opencc-by-4.0Sep 2020View details →
zenodo28/100

Contrasting aerosol effects on longwave cloud forcing in South East Asia and Amazon simulated with Community Atmosphere Model version 5.3

<p>Aerosols modify cloud microphysical and radiative properties and thus impact the shortwave (SW) and longwave cloud forcing (LWCF). This study first reports the finding of contrasting aerosol effects on LWCF in South East Asia and Amazon in the Community Atmosphere Model version 5.3 (CAM5.3), which corresponds to the sum of LW indirect and semi-direct effects investigated in Ghan et al., (2012). A series of numerical experiments is conducted to decompose the complex aerosol effects on LWCF. Our analysis indicates that the cooling (negative aerosol effects on LWCF) in Amazon is due mainly to the aerosol effects on warm clouds and the inhibition of vertical motion by the aerosol-induced radiative cooling. In contrast, the warming (positive aerosol effects on LWCF) in South East Asia is due mainly to the aerosol effect on homogeneous freezing, thus reducing the ice particle size and prolonging the existence of ice cloud. Our results emphasize that a comprehensive analysis of integrated aerosol effects on both warm and ice clouds is necessary for better understanding the aerosol effects on LWCF.</p>

opencc-by-4.0Nov 2020View details →
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FIGURE 2 in Catalogue of rhysodine beetles (Coleoptera: Carabidae) from East Asia

FIGURE 2. Species proportion of Rhysodinae from East Asia in different tribes and genera.

opennotspecifiedDec 2020View details →
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FIGURE 1 in Catalogue of rhysodine beetles (Coleoptera: Carabidae) from East Asia

FIGURE 1. Species diversity of Rhysodinae from East Asia at the country level.

opennotspecifiedDec 2020View details →
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Fig. 20 in Selasia dembickyi sp. nov., the first member of Drilini (Coleoptera: Elateridae) from South East Asia, with the description of S. jenisi sp. nov. from Nepal

Fig. 20. The distribution of Selasia species in the southern part of Asia. Selasia decipiens Guérin-Menéville, 1843 is not included in the map because its exact distribution in India is not known.

opencc-by-4.0Nov 2018View details →
dryad28/100

Ancient and modern colonization of North America by hemlock woolly adelgid, Adelges tsugae (Hemiptera: Adelgidae), an invasive insect from East Asia

Hemlock woolly adelgid, Adelges tsugae, is an invasive pest of hemlock trees (Tsuga) in eastern North America. We used 14 microsatellites and mitochondrial COI sequences to assess its worldwide genetic structure and reconstruct its colonization history. The resulting information about its life cycle, biogeography and host specialization could help predict invasion by insect herbivores. We identified eight endemic lineages of hemlock adelgids in central China, western China, Ulleung Island (South Korea), western North America, and two each in Taiwan and Japan, with the Japanese lineages specializing on different Tsuga species. Adelgid life cycles varied at local and continental scales with different sexual, obligately asexual and facultatively asexual lineages. Adelgids in western North America exhibited very high microsatellite heterozygosity, which suggests ancient asexuality. The earliest lineages diverged in Asia during Pleistocene glacial periods, as estimated using approximate Bayesian computation. Colonization of western North America was estimated to have occurred prior to the last glacial period by adelgids directly ancestral to those in southern Japan, perhaps carried by birds. The modern invasion from southern Japan to eastern North America caused an extreme genetic bottleneck with just two closely related clones detected throughout the introduced range. Both colonization events to North America involved host shifts to unrelated hemlock species. These results suggest that genetic diversity, host specialization and host phylogeny are not predictive of adelgid invasion. Monitoring non-native sentinel host trees and focusing on invasion pathways might be more effective methods of preventing invasion than making predictions using species traits or evolutionary history.

opencc-zeroDec 2015View details →
zenodo28/100

FIGURE 4 in Key for identification of Cladocera of the subfamily Aloninae (Anomopoda: Chydoridae) from South-East Asia

FIGURE 4. Characteristics used for the genera identification key of Aloninae. Theses 21–23.

opennotspecifiedDec 2016View details →
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FIGURE 3 in Key for identification of Cladocera of the subfamily Aloninae (Anomopoda: Chydoridae) from South-East Asia

FIGURE 3. Characteristics used for the genera identification key of Aloninae. Theses 15–20.

opennotspecifiedDec 2016View details →
zenodo28/100

FIGURE 2 in Key for identification of Cladocera of the subfamily Aloninae (Anomopoda: Chydoridae) from South-East Asia

FIGURE 2. Characteristics used for the genera identification key of Aloninae. Theses 9–14.

opennotspecifiedDec 2016View details →

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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.

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OpenNeuro

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