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998 results for “Central Asia”
FIGURE 1 in New and little known digger wasps of the genus Ammophila W. Kirby, 1798 (Hymenoptera: Apoidea: Sphecidae) from Central Asia
FIGURE 1. Collecting localities of new and little known Ammophila.
FIGURES 14–17 in Lathrolestes (Hymenoptera, Ichneumonidae) from Central Asia, with a key to the species of the tripunctor species-group
FIGURES 14–17. Lathrolestes kozlovi sp. nov. 14—mesopleuron; 15—propodeum; 16—face; 17—habitus.
FIGURES 42–44 in Lathrolestes (Hymenoptera, Ichneumonidae) from Central Asia, with a key to the species of the tripunctor species-group
FIGURES 42–44. Lathrolestes ruficaudus sp. nov. 42—face; 43—propodeum; 44—habitus.
FIGURES 7, 8 in Lathrolestes (Hymenoptera, Ichneumonidae) from Central Asia, with a key to the species of the tripunctor species-group
FIGURES 7, 8. Lathrolestes grahami sp. nov. 7—face; 8—habitus.
FIGURE 1 in The genus Colletes (Hymenoptera: Apoidea: Colletidae) in Central Asia
FIGURE 1. Map of Central Asia.
FIGURE 38 in New data on Apteroloma (Coleoptera: Agyrtidae) of central Asia and the Himalayas with a new synonymy
FIGURE 38. Distribution of Apteroloma anglorossicum, A. harmandi and A. sillemi.
FIGURE 51 in A survey of East Palaearctic Gnaphosidae (Araneae). 5. On Synaphosus from Central Asia
FIGURE 51. Collecting localities of specimens examined in this study of seven Synaphosus species.
SWECA: High-resolution daily Snow Water Equivalent estimates for Mountainous Central Asia (1979–2016)
<p>The dataset provides daily estimates of snow water equivalent (SWE) for Central Asia, at a spatial resolution of 1km, covering the period from 1979 to 2016. The dataset were generated within the <a href="https://www.iamo.de/en/research/research-projects/details/sweca/">SWECA</a> project, supported by GEO Mountains under the Adaptation at Altitude Programme (Swiss Agency for Development and Cooperation Project Number: 7F-10208.01.02).</p> <p><strong>Spatial Domain:</strong><br>The dataset encompasses the Central Asian region within the bounding coordinates 61W, 81E, 44N, 34S, which covers the Tian-Shan and Pamir mountains, a larger extent of the Hindukush mountains, and the northern part of the Karakoram mountains.</p> <p><strong>Data Generation and Validation:</strong><br>The SWE data was generated using the <a href="../records/10161423">GEMS snow mode</a>l (Umirbekov, Essery, and Müller, 2024), forced by CHELSA-W5E5 daily climate data (Karger et al., 2023). Simulated SWE was validated using historical records of SWE from 1980 to 1992 from Central Asian Snow Survey database (Bedford and Tsarev, 2001), and by comparing extent of the modelled SWE with MODIS derived snowcover for two consecutive hydrological years (2015-2016). Data generation procedures and validation results will be provided in upcoming data description paper (TBD).</p> <p><strong>File Descriptions:</strong><br>The daily SWE estimates (in millimeters) are compiled into 37 GeoTIFF files, each corresponding to a hydrological year from 1979 to 2016. The hydrological year begins on October 1st and concludes on September 30th of next year. To avoid the need for auxiliary files, the corresponding date of each layer in the GeoTIFF file is incorporated as a layer`s name. </p> <p>References: </p> <ul> <li>Bedford, D. and Tsarev, B. (2001) ‘Central Asian Snow Cover from Hydrometeorological Surveys, Version 1 [Dataset]’. Boulder, Colorado USA.: National Snow and Ice Data Center. doi: <a href="https://doi.org/10.7265/N51Z4291">10.7265/N51Z4291</a>.</li> <li>Karger, D. N. et al. (2023) ‘CHELSA-W5E5: daily 1km meteorological forcing data for climate impact studies’, Earth System Science Data, 15(6), pp. 2445–2464. doi: <a href="https://doi.org/10.5194/essd-15-2445-2023">10.5194/essd-15-2445-2023</a>.</li> <li>Riggs, G., Hall, D. and Salomonson, V. (2019) ‘MODIS snow products user guide to collection 6.1: MODIS-derived snow cover retrievals using the cloud-gap-filled MOD10A1F product’.</li> <li>Umirbekov, A., Essery, R. and Müller, D. (2024) ‘GEMS v1.0: Generalizable Empirical Model of Snow Accumulation and Melt, based on daily snow mass changes in response to climate and topographic drivers’, Geoscientific Model Development, 17(2), pp. 911–929. doi: <a href="https://doi.org/10.5194/gmd-17-911-2024">10.5194/gmd-17-911-2024</a>. </li> </ul>
Figure 7 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 7 Takobia shughnonica sp. nov., nymph A labrum (left side dorsal view, right side ventral view) B left mandible (dorsal view) C right mandible (dorsal view) D right mandible, detail of incisors and prostheca (dorsal view) E left mandible, detail of incisors and prostheca (dorsal view) F maxilla (dorsal view) G labium (left side ventral view, right side dorsal view) H foreleg (dorsal view) I middle leg (dorsal view) J hind leg (dorsal view) K–Q gill plates.
Figure 6 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 6 Takobia sinusopalpata sp. nov., nymph A detail of right prostheca B tarsal claw C pronotum texture D posterior margin of abdominal tergite V E posterior margin of abdominal sternite V F paraproct. Scale bars: 10 μm (A); 100 μm (B, G); 20 μm (C); 50 μm (D, E).
Figure 5 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 5 Takobia sinusopalpata sp. nov., nymph A labrum (left side dorsal view, right side ventral view) B left mandible (dorsal view) C right mandible (dorsal view) D right mandible, detail of incisors and prostheca (dorsal view) E left mandible (dorsal view), detail of incisors and prostheca (dorsal view) F maxilla (dorsal view) G labium (left side ventral view, right side dorsal view) H foreleg (dorsal view) I middle leg (dorsal view) J hind leg (dorsal view) K–Q gill plates.
Figure 2 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 2 Map with known occurrences of individual Takobia species. Explanation of symbols directly in the figure. The larger symbol with thickened border indicates a type locality.
Figure 1 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 1 Takobia nymphs, habitus photographs AT. maxillare, habitus in dorsal view BT. sinusopalpata sp. nov., habitus in dorsal view CT. shughnonica sp. nov., habitus in dorsal view DT. maxillare, habitus in lateral view ET. sinusopalpata sp. nov., habitus in lateral view FT. shughnonica sp. nov., habitus in lateral view. Scale bar:1 mm.
Figure 4 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 4 T. maxillare, nymph A detail of right prostheca B tarsal claw C pronotum texture D margin of gill plate V (dorsal view) E posterior margin of abdominal tergite V F posterior margin of abdominal sternite V G paraproct. Scale bars: 50 μm (A, C–F); 100 μm (B, G).
Figure 9 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 9 Takobia spp., examples of habitats A locality of T. sinusopalpata sp. nov. (Otmek Riv., locality code: 65Kyrg) B type locality of T. sinusopalpata sp. nov. (left tributary of the Adygene Riv., code: 17Kyrg) C locality of T. shughnonica sp. nov. (right tributary of Gunt Riv., code: 15Tj) D locality of T. shughnonica sp. nov. (stream on the slope of Gunt Riv. valley, code: 93Tj) E locality of T. shughnonica sp. nov. (right source of the Bogev-dara Riv., code: 123Tj).
Figure 8 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 8 Takobia shughnonica sp. nov., nymph A detail of right prostheca B tarsal claw C pronotum texture D posterior margin of abdominal tergite VI E posterior margin of abdominal sternite VI F paraproct. Scale bars: 10 μm (A); 100 μm (B, F); 50 μm (C–E).
Figure 3 from: Sroka P, Yanai Z, Palatov D, Gattolliat J-L (2021) Contribution to the knowledge of the genus Takobia Novikova & Kluge, 1987 (Ephemeroptera, Baetidae) in Central Asia. ZooKeys 1071: 127-154. https://doi.org/10.3897/zookeys.1071.71582
Figure 3 T. maxillare, nymph A labrum (left side dorsal view, right side ventral view) B left mandible (dorsal view) C right mandible (dorsal view) D right mandible, detail of incisors and prostheca (dorsal view) E left mandible (dorsal view), detail of incisors and prostheca (dorsal view) F maxilla (dorsal view) G labium (left side ventral view, right side dorsal view) H foreleg (dorsal view) I middle leg (dorsal view) J hind leg (dorsal view) K–Q gills.
Figs 25−26 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 25−26. Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov., urosternite I, lateral side. 25. ♂, paratype (MZB (MCNB) 2021-2339). 26. ♀, paratype (MZB (MCNB) 2021-2338). Abbreviations: a 1 = glandular setae in distal portion of appendages; a 2 = lateral-ventral glandular setae; g 1 = posterior glandular setae of urosternite.
Figs 16−18 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 16−18. Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov. 16. ♂, paratype (Coll. AS), detail of mesonotum. 17. ♂, paratype (Coll. AS), detail of lateral posterior mesonotum. 18. ♀, holotype (IBB 92101), thoracic nota.
Figs 2−9 in Campodeidae (Hexapoda: Diplura) from Kyrgyzstan, Central Asia, with the description of a remarkable new genus and species
Figs 2−9. Ak-Turpak Cave, Kadamjay District, Batken Region in Kyrgyzstan in Central Asia. 2. Whitish, pinkish, or reddish clayey ground surface where the entrance is located. 3. Entrance of the cave, exterior view. 4. Entrance of the cave, interior view. 5. Small platforms and mattresses near the entrance. 6. Stairs installed deep inside the cave. 7. Last chamber of the cave, which is always associated with old bat guano. 8. Individual of Kyrgyzstancampa sanare Sendra & Ferreira gen. et sp. nov., observed amidst guano. 9. Another specimen of K. sanare Sendra & Ferreira gen. et sp. nov.
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Allen Brain Atlas
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