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998 results for “Central Asia”
FIGURES 226–231 in A revision of the genus Drasteria of Central Asia and Kazakhstan with special attention to the adjacent areas (Lepidoptera: Erebidae)
FIGURES 226–231. Male genitalia of Drasteria. 226, 227. D. kusnezovi (John, 1910), lectotype (226: frontal view; 227: aedoeagus, vesica inverted). 228, 229. D. rada sibirica (Kozhantschikov, 1925), lectotype (228: frontal view; 229: aedoeagus, vesica inverted). 230, 231. D. christophi (Alphéraky, 1895), Aktyubinsk vicinity, Kazakhstan (230: frontal view; 231: aedoeagus, vesica inverted).
FIGURES 148–165. Drasteria specimens. 148–153. D in A revision of the genus Drasteria of Central Asia and Kazakhstan with special attention to the adjacent areas (Lepidoptera: Erebidae)
FIGURES 148–165. Drasteria specimens. 148–153. D. picta (Christoph, 1877), Krasnowodsk, Turkmenistan (148), Sauskan sands, Kazakhstan (149), Aidarly, Kazakhstan (150), holotype of austera John, 1917 (151: upperside; 152: underside; 153: labels). 154–159. D. sesquistria (Eversmann, 1854), lectotype (154: upperside; 155: underside; 156: labels), Ili river valley, Kazakhstan (157), Aidarly, Kazakhstan (158), Sauskan sands, Kazakhstan (159). 160–165. D. aberrans (Staudinger, 1888), lectotype (160: upperside; 161: underside; 162: labels), Kapchagai, Kazakhstan (163), Baian Toroi, Mongolia (164), Aidarly, Kazakhstan (165).
FIGURES 214–219 in A revision of the genus Drasteria of Central Asia and Kazakhstan with special attention to the adjacent areas (Lepidoptera: Erebidae)
FIGURES 214–219. Male genitalia of Drasteria. 214, 215. D. sesquilina (Staudinger, 1888), lectotype (214: frontal view; 215, aedoeagus, vesica inverted). 216, 217. D. langi langi (Erschoff, 1874), lectotype (216: frontal view; 217: vesica inverted). 218, 219. D. langi obscurata (Staudinger, 1882), lectotype (218: frontal view; 219: aedoeagus, vesica inverted).
COSMO-CLM outputs Central Asia Russo et al. 2019
<p>Monthly values of 2-meter temperature (T2M), total precipitation (TOT_PREC) and diurnal temperature range (DTR) derived from the simulations performed with the Regional Climate Model COSMO-CLM (Roeckel et al. 2008) for the CORDEX Central Asia Domain, presented in Russo et al. 2019 ( https://doi.org/10.5194/gmd-2019-22, 2019).</p> <p>The data have a spatial resolution of ~25 km. The data cover the period 1996-2005. For some realization, a file covering the period 2005-2015 is also present. All simulations are initialized on the 01.01.1991. The only exception are 4 simulations used to investigate the model internal variability, whose initial time has been shifted of +1,-1,+3 and -3 with respect to the default initial date.</p>
CCLM outputs Parameters Sensitivity Investigation Central Asia and Europe
<p>Monthly values of 2-meter temperature (T2M), total precipitation (TOT_PREC) and total cloud cover (CLCT) derived from the simulations performed with the Regional Climate Model COSMO-CLM (Roeckel et al. 2008) for the CORDEX Central Asia and Europe Domains, used for the paper "Exploring the Parameters Space of the Regional Climate Model COSMO-CLM 5.0 for the CORDEX Central Asia Domain" by RUSSO et al. (geoscientific model development), submitted for the first time on the 31st of October 2019.</p> <p>The data have a spatial resolution of ~25 km. The data cover mainly the year 2000. These are the sensitivity simulations, initialized on the 01.01.2000 using a restart file derived from the reference simulations for the two domains (ncep022_test_belprat1 and europe_test_belprat1) also provided here. For some realization, a file covering the period 1996-2005 is also present. These data are used to assess the model internal variability over the considered period.</p>
Figs 41–49. Schizotergitius altajicus Loksa, 1978 in On the centipede genus Schizotergitius Verhoeff, 1930, with a redescription of Schizotergitius altajicus Loksa, 1978 and a key to the genera of the family Lithobiidae in Central Asia (Chilopoda: Lithobiomorpha)
Figs 41–49. Schizotergitius altajicus Loksa, 1978 (paratypes: 41, 42, 44, 45; non-types: 43, 46, 48 — ASU No. 295, 47, 49 — PSU No. 668): 41 — front body fragment of ♂, dorsal view; 42 — intermediate tergite of ♂, dorsal view; 43, 44 — fragment of ♂ antenna, lateral and dorsal views, respectively; 45 — rear body fragment of ♂, ventral view; 46 — ♀ forcipule, ventral view; 47 — dental margin of ♂ forcipular coxosternite, ventral view; 48, 49 — ♂ femur 15, dorsal view. Abbreviation: p — pore. Scale: 1 mm (49), 0.5 mm (41, 42, 45, 46, 48), 0.1 m (43, 44), 0.3 mm (47). Рис. 41–49. Schizotergitius altajicus Loksa, 1978 (паратипы: 41, 42, 44, 45; нетиповой материал: 43, 46, 48 — ASU No. 295, 47, 49 — PSU No. 668): 41 — переднЯЯ часть тела ♂, сверху; 42 — промежуточный тергит ♂, сверху; 43, 44 — фрагмент антенны ♂, соответственно сбоку и сверху; 45 — ЗаднЯЯ часть тела ♂, сниЗу; 46 — ногочелюсть ♀, сниЗу; 47 — Зубной край коксостернита ногочелюсти ♂, сниЗу; 48, 49 — бедро 15 у ♂, сверху. ОбоЗначение: p — пора. МасШтаб: 1 мм (49), 0,5 мм (41, 42, 45, 46, 48), 0,1 мм (43, 44), 0,3 мм (47).
Fig. 1 in On the centipede genus Schizotergitius Verhoeff, 1930, with a redescription of Schizotergitius altajicus Loksa, 1978 and a key to the genera of the family Lithobiidae in Central Asia (Chilopoda: Lithobiomorpha)
Fig. 1. Distribution of Schizotergitius altajicus Loksa, 1978: the type locality (asterisk), the type locality of S. altajicus f. gracilis Loksa, 1978 (triangle), non-type material (circles). Рис. 1. Распространение Schizotergitius altajicus Loksa, 1978: типовое местонахождение (ЗвеЗдочка), типовое местонахождение S. altajicus f. gracilis Loksa, 1978 (треугольник), нетиповой материал (круг).
Figs 50–57. Schizotergitius altajicus Loksa, 1978 in On the centipede genus Schizotergitius Verhoeff, 1930, with a redescription of Schizotergitius altajicus Loksa, 1978 and a key to the genera of the family Lithobiidae in Central Asia (Chilopoda: Lithobiomorpha)
Figs 50–57. Schizotergitius altajicus Loksa, 1978 (50–54, paratypes) and Lithobius giganteus Sseliwanoff, 1881 (55–57, ♂, ASU No. 318; Mongolia, Khovd Aimag; dorsal view): 50 — ♂ tergite 2, dorsal view; 51 — rear part of ♂ tergite 5, dorsal view; 52, 53 — ♀ sternites 7 and 8, ventral view; 54 — prefemur and femur of ♂ leg 13, ventrolateral view; 55 — rear part of tergite 12; 56 — tergites 4 and 5; 57 — tergites 9 and 10. Abbreviations: n — notch, mn — median notch. Scale: 1 mm (56, 57), 0.5 mm (50–53, 55), 0.2 mm (54). Рис. 50–57. Schizotergitius altajicus Loksa, 1978 (50–54, паратипы) и Lithobius giganteus Sseliwanoff, 1881 (55–57, ♂, ASU No. 318; МонголиЯ, Ховд Аймак; сверху): 50 — тергит 2 у ♂, сверху; 51 — ЗаднЯЯ часть тергита 5 у ♂, сверху; 52, 53 — стерниты 7 и 8 у ♀, сниЗу; 54 — предбедро и бедро 13-й пары у ♂, одновременно сниЗу и сбоку; 55 — ЗаднЯЯ часть тергита 12; 56 — тергиты 4 и 5; 57 — тергиты 9 и 10. ОбоЗначениЯ: n — бороЗдка, mn — срединнаЯ бороЗдка. МасШтаб: 1 мм (56, 57), 0,5 мм (50–53, 55), 0,2 мм (54).
Figs 9–18. Schizotergitius altajicus Loksa, 1978 in On the centipede genus Schizotergitius Verhoeff, 1930, with a redescription of Schizotergitius altajicus Loksa, 1978 and a key to the genera of the family Lithobiidae in Central Asia (Chilopoda: Lithobiomorpha)
Figs 9–18. Schizotergitius altajicus Loksa, 1978 (♂ paratypes: 13, 14; non-types: 9, 11, 12, 15–18 — PSU No. 668, 10 — ASU No. 295): 9 — mandible, anterodorsal view; 10 — aciculae of mandible, anterodorsal view; 11 — right part of second maxillae and its apical part, ventral view; 12 — apical part of second maxillae, dorsal view; 13–14 — ocelli and Tömösváry´s organ, lateral view; 15 — central and left parts of labrum, ventral view; 16 — apical part of first maxillae telopodite, ventral view; 17 — coxal projection of first maxillae, ventral view; 18 — terminal article and coxal projection of the first maxillae, ventral view. Scale: 0.1 mm (11–12, 15–18), 0.5 mm (9), 0.05 mm (10). Рис. 9–18. Schizotergitius altajicus Loksa, 1978 (паратипы, самцы: 13, 14; нетиповой материал: 9, 11, 12, 15–18 — PSU No. 668, 10 — ASU No. 295): 9 — мандибула, одновременно спереди и сверху; 10 — мандибулЯрные ацикулы, одновременно спереди и сверху; 11 — праваЯ часть вторых максилл и их апикальнаЯ часть, сниЗу; 12 — верШиннаЯ часть вторых максилл, сверху; 13–14 — глаЗки и орган ТемеШвари, сбоку; 15 — центральнаЯ и леваЯ части верхней губы, сниЗу; 16 — верШиннаЯ часть телоподита первых максилл, сниЗу; 17 — коксальный отросток первых максилл, сниЗу; 18 — верШиннаЯ часть телоподита и коксальный отросток первых максилл, сниЗу. МасШтаб: 0,1 мм (11–12, 15–18), 0.5 мм (9), 0,05 мм (10).
Figs 19–29. Schizotergitius altajicus Loksa, 1978 in On the centipede genus Schizotergitius Verhoeff, 1930, with a redescription of Schizotergitius altajicus Loksa, 1978 and a key to the genera of the family Lithobiidae in Central Asia (Chilopoda: Lithobiomorpha)
Figs 19–29. Schizotergitius altajicus Loksa, 1978 (male; paratypes: 19–27; nontype: 28, 29 — PSU No. 668): 19 — leg 15, dorsal view; 20 — femur and tibia of legs 15, dorsal view; 21 — claw of leg 15, lateral view; 22 — tibia 15, dorsal view; 23 — same, meso-dorsal view; 24 — gonopod, ventral view; 25 — distal part of tibia 15, mesodorsal view; 26 — femur 15, dorsal view; 27 — same, mesodorsal view; 28 — distal part of tibia 15, dorsal view; 29 — blot on tibia 15, dorsal view. Abbreviations: ds — dorsal sulcus, dls — dorsolateral sulcus, p — pore. Scale: 1 mm (19), 0.5 mm (20, 22, 23, 25–28), 0.2 mm (29), 0.1 mm (21, 24). Рис. 19–29. Schizotergitius altajicus Loksa, 1978 (♂♂; паратипы: 19–27; нетиповой материал: 28, 29 — PSU No. 668): 19 — нога 15, дорсально; 20 — бедро и голень ноги 15, дорсально; 21 — коготок ноги 15, латерально; 22, 23 — голень ноги 15, соответственно сверху и одновременно иЗнутри и сверху; 24 — гонопод, вентрально; 25 — дистальнаЯ часть голени 15, меЗо-дорсально; 26 — бедро 15, дорсально; 27 — то же, меЗо-дорсально; 28 — дистальнаЯ часть голени 15, дорсально; 29 — пЯтно на голени 15, дорсально. ОбоЗначениЯ: ds — дорсальнаЯ бороЗдка, dls — верхнебоковаЯ бороЗдка, p — пора. МасШтаб: 1 мм (19), 0.5 мм (20, 22, 23, 25–28), 0.2 мм (29), 0.1 мм (21, 24).
Figs 12–14 in New Palaeontinidae (Cicadomorpha) from the Triassic of Central Asia: the earliest intimidating eyespots in Hemiptera
Figs 12–14. Intimidating eyespots: 12–13 — Papiliontina dracomima sp.n., Madygen, Triassic: 12 — reconstruction of the holotype with spread forewings (photomontage); 13 – forewing (costal margin looking down); 14 — Spirama retorta (Clerck, 1764) (Erebidae), female, India, recent; image by Vinayaraj, 2013, licence CC BY-SA 3.0. https://en.wikipedia.org/wiki/Spirama#/media/File:Spirama_retorta_13.jpg Рис. 12–14. УстраШаюЩие глаЗчатые пЯтна: 12–13 — Papiliontina dracomima sp.n., Мадыген, триас: 12 — реконструкциЯ голотипа с отведенными в стороны передними крылЬЯми (фотомонтаж); 13 – переднее крыло (косталЬный край обраЩен вниЗ); 14 — Spirama retorta (Clerck, 1764) (Erebidae), самка, ИндиЯ, современнаЯ; фото Vinayaraj, 2013, licence CC BY-SA 3.0. https:// en.wikipedia.org/wiki/Spirama#/media/File:Spirama_retorta_13.jpg
Figs 13–19 in Several noteworthy records of millipedes (Diplopoda) from Central Asia
Figs 13–19. Orinisobates sibiricus (Gulièka, 1963), adult ♂♂ (13–14, 17–19) and ♀♀ (15–16) from near Lepsinsk. 13–16 — habitus (13–15 — lateral, 16 — subventral views); 17 — both anterior gonopods, caudal view; 18, 19 — right posterior gonopods, mesal views. Photographs by K.V. Makarov, taken not to scale; line drawings by the author. Scale bar — 0.1 mm. Рис. 13–19. Orinisobates sibiricus (Gulička, 1963), вЗрослые ♂♂ (13–14, 17–19) и ♀♀ (15–16) иЗ окрестностей Лепсинска. 13–16 — обЩий вид (13–15 — сбоку, 16 — сбоку и почти сниЗу); 17 — оба передних гонопода, сЗади; 18, 19 — правый Задний гонопод, иЗнутри. Фотографии К.В. Макарова, снЯты беЗ масШтаба; рисунки автора. МасШтаб — 0,1 мм.
waveform data of the Empirical Green's Functions (EGFs) and earthquakes for the manuscript "Unraveling the Mantle Dynamics in Central Asia with Full Waveform Inversion Tomography"
<p>The dataset uploaded contains the original ASDF files and the SAC files (with '_sac') converted from ASDF</p> <p>For the ASDF files:</p> <p>The ASDF data file could be read through python module pyasdf and obspy after decompressing. </p> <p>The earthquake information could be accessed by the following command</p> <p>import pyasdf</p> <p>ds=pyasdf.ASDFDataSet(ASDFfile, mode='r')</p> <p>event=ds.events[0].preferred_origin()</p> <p>print(event)</p> <p>the waveforms coul dbe accessed through</p> <p>stream=ds.waveforms[net.station].raw_recording</p>
Figs 21–30 in Contributions to the study of Ceraeocercus fuscipennis Uvarov, 1910 (Orthoptera: Tettigoniidae) in Kazakhstan and Central Asia
Figs 21–30. Male calling signals of Ceraeocercus fuscipennis: 21–24, 28–29 — C. f. fuscipennis; 25–27, 30 — C. f. hindukushanus; 21–27 — oscillograms; 28, 30 — frequency spectra of syllables in linear scale; 29 — same, opening hemisyllable. Faster oscillograms of the parts of signals indicated as "22–24" and "26–27" are given under the same numbers. Рис. 21–30. ПриЗывные сигналы самцов Ceraeocercus fuscipennis: 21–24, 28–29 — C. f. fuscipennis; 25–27, 30 — C. f. hindukushanus; 21–27 — осциллограммы; 28, 30 — частотные спектры серий (в линейном масШтабе); 29 — то же, интерпульсов (opening hemisyllable). Фрагменты сигналов, помеченные цифрами "22–24" и "26–27", представлены при больШей скорости раЗвёртки на осциллограммах под соответствуюЩими номерами.
Figures 35–36 in A new genus of Oecobiinae (Araneae: Oecobiidae) from Iran and Central Asia
Figures 35–36. Distribution records of the species of Turanobius gen. n. Square – T. tadzhikus comb. n.; diamond – T. ferdowsii comb. n.; inverted triangle – T. leptonychus sp. n.; triangle – T. hissaricus sp. n;? – doubtful records. The square box in Figure 35 encloses the area of Figure 36.
Figures 20–22 in A new genus of Oecobiinae (Araneae: Oecobiidae) from Iran and Central Asia
Figures 20–22. Male palp of Turanobius leptonychus sp. n. (20), T. hissaricus sp. n. (21) and T. ferdowsii comb. n. (22), prolateral. 22 reproduced from Fomichev (2022). Scale bars: 0.2 mm.
Figures 14–19 in A new genus of Oecobiinae (Araneae: Oecobiidae) from Iran and Central Asia
Figures 14–19. Male palp of Turanobius leptonychus sp. n. (14, 15), T. hissaricus sp. n. (16, 17) and T. ferdowsii comb. n. (18, 19). 14, 16, 18 – retrolateral; 15, 17, 19 – ventral. 18, 19 reproduced from Fomichev (2022). Scale bars: 0.2 mm.
Figures 1–7 in A new genus of Oecobiinae (Araneae: Oecobiidae) from Iran and Central Asia
Figures 1–7. General appearance of Turanobius tadzhikus comb. n. (1, 2), T. ferdowsii comb. n. (3, 4), T. leptonychus sp. n. (5, 6) and T. hissaricus sp. n. (7). 2–5, 7 – male; 1, 6 – female. 1–3, 5–7 – dorsal; 4 – ventral. 1, 2 and 3, 4 reproduced from Marusik et al. (2015) and Fomichev (2022), respectively. Scale bars: 1 mm.
FIGURE 4 in Eutrema tianshanense (Brassicaceae), a new species from Tian Shan Mountains of central Asia
FIGURE 4. Different stages of Eutrema tianshanense: a. flowering stage b. young fruit stage c. mature fruit stage.
FIGURE 3 in Eutrema tianshanense (Brassicaceae), a new species from Tian Shan Mountains of central Asia
FIGURE 3. Divergence timescales of Eutrema s.l. determined by BEAST. Letters in black circles represent time calibration points.
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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International Brain Laboratory public data
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OpenNeuro
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