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886 results for “Kazakhstan”

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zenodo36/100

FIG. 2. — Kurgan n in Horse sacrifice in a Pazyryk culture kurgan: the princely tomb of Berel'(Kazakhstan). Selection criteria and slaughter procedures

FIG. 2. — Kurgan n° 11 during excavation (photo S. Lepetz).

opencc-by-4.0Dec 2013View details →
zenodo36/100

FIG. 6 in Horse sacrifice in a Pazyryk culture kurgan: the princely tomb of Berel'(Kazakhstan). Selection criteria and slaughter procedures

FIG. 6. — Location and position of each of the horses.

opencc-by-4.0Dec 2013View details →
zenodo32/100

FIGURE 2 in A new species of Dienerella Reitter, 1911 from Kazakhstan, with an updated checklist of Dienerella species and summary of their distribution (Coleoptera: Latridiidae: Latridiinae)

FIGURE 2. Pronota of A Dienerella katarzynae sp. nov. (holotype); B D. beloni (Reitter, 1882); C D. pilifera (Reitter, 1875); D D. elegans (Aubé, 1850).

opennotspecifiedJan 2020View details →
zenodo32/100

FIGURE 1 in A new species of Dienerella Reitter, 1911 from Kazakhstan, with an updated checklist of Dienerella species and summary of their distribution (Coleoptera: Latridiidae: Latridiinae)

FIGURE 1. Dienerella katarzynae sp. nov., holotype (male): A habitus, dorsal view (body length: 1.36 mm); B antenna (length: 0.31 mm); C aedeagus, lateral view (length: 0.33).

opennotspecifiedJan 2020View details →
zenodo32/100

FIGURE 3 in A new species of Dienerella Reitter, 1911 from Kazakhstan, with an updated checklist of Dienerella species and summary of their distribution (Coleoptera: Latridiidae: Latridiinae)

FIGURE 3. Dienerella katarzynae sp. nov.: A Type locality—small deciduous forest; B Detailed view of the host plant (ashleaved maple—Acer negundo L.).

opennotspecifiedJan 2020View details →
zenodo32/100

FIGURES 13–21 in A survey of East Palaearctic Gnaphosidae (Araneae). 10. Three new Gnaphosa species from the Dzhungarian Alatau Mountains (Eastern Kazakhstan)

FIGURES 13–21. Bulbus and epigyne of Gnaphosa aksuensis sp. n. (13, 16, 19), G. mataica sp. n. (14, 17, 20) and G. prashkevichi sp. n. (15, 18, 21). 13–15 bulbus, apical; 16–18 epigyne, ventral; 19–21 macerated epigyne, dorsal. Scale bars = 0.2 mm. Es embolic spine, Fb foveal bulges, Lp pockets of lateral margins of the fovea, Rs stems of the receptacle head, Sc scape.

opennotspecifiedDec 2019View details →
zenodo32/100

FIGURES 7–12 in A survey of East Palaearctic Gnaphosidae (Araneae). 10. Three new Gnaphosa species from the Dzhungarian Alatau Mountains (Eastern Kazakhstan)

FIGURES 7–12. Bulbus of Gnaphosa aksuensis sp. n. (7, 10), G. mataica sp. n. (8, 11) and G. prashkevichi sp. n. (9, 12). 7–9 ventral, 10–12 prolateral. Scale bars = 0.2 mm. Eb base of embolus, El embolic lamina, Es embolic spine, Ma median apophysis.

opennotspecifiedDec 2019View details →
zenodo32/100

FIGURES 22–25 in A survey of East Palaearctic Gnaphosidae (Araneae). 10. Three new Gnaphosa species from the Dzhungarian Alatau Mountains (Eastern Kazakhstan)

FIGURES 22–25. Habitus of Gnaphosa prashkevichi sp. n. (22) and collecting localities of species of Gnaphosa rasnitsyni- group (23–25). G. aksuensis sp. n., square, G. esyunini, pentagon, G. khovdensis, star, G. mataica sp. n., triangle, G. prashkevichi sp. n., circle, G. rasnitsyni, inverted triangle, G. serzonsteini, diamond. Frame on Fig. 23 refers to Fig. 24.

opennotspecifiedDec 2019View details →
zenodo32/100

FIGURES 1–6 in A survey of East Palaearctic Gnaphosidae (Araneae). 10. Three new Gnaphosa species from the Dzhungarian Alatau Mountains (Eastern Kazakhstan)

FIGURES 1–6. Male palps of Gnaphosa aksuensis sp. n. (1, 4), G. mataica sp. n. (2, 5) and G. prashkevichi sp. n. (3, 6). 1–3 ventral, 4–6 retrolateral. Scale bars = 0.2 mm.

opennotspecifiedDec 2019View details →
zenodo32/100

FIGURES 11–12 in Two new species of the genus Psorosa Zeller, 1846 (Lepidoptera: Pyralidae, Phycitinae) from South Kazakhstan

FIGURES 11–12. Female genitalia of Psorosa spp. 11. P. desaturata sp. nov. 12. P. pseudoelbursella sp. nov. Scale bar: 1 mm.

opennotspecifiedJun 2020View details →
dryad32/100

Data from: North Asian Pliocene-Pleistocene beremendiin shrews (Mammalia, Lipotyphla, Soricidae): a description of material from Russia (Siberia), Kazakhstan, and Mongolia and the paleobiology of Beremendia

Beremendiini is an extinct group of soricine shrews that were widely distributed during the Pliocene and Pleistocene. Their occurrence in China has been investigated, but their presence in North Asian regions has remained poorly studied. This paper analyzes 56 fossil remains of Beremendiini collected from 16 early Pliocene to Early Pleistocene localities in Russia (Siberia), Kazakhstan, and Mongolia and shows the presence of two beremendiin species: Beremendia fissidens and Beremendia minor. North Asian Beremendia considerably varies in size and qualitative characteristics, although most of the different states have been identified in European or Chinese specimens. Through the application of geometric morphometric techniques, mandibular shape analyses reveal similarities between the members of the beremendiin genera Peisorex, Beremendia, and Lunanosorex. Shape analyses and comparisons of mandibular characteristics reveal 'trophic' analogies between Beremendia and Blarina members and a new model of 'Mandible Swinging and Sliding' (MSS-model) accounting for the similarities in mandibular morphology with implications for the understanding of the diet of Beremendia.

opencc-zeroDec 2018View details →
zenodo32/100

FIGURE 5 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains

FIGURE 5. Genitalia of Dyspessa tristis, male (A); D. saldaitisi, male (B); D. ulula, male (C); D. saissanica, male (D); D. ulgen, male (E) and female (F). Scale bar = 1 mm.

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 2 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains

FIGURE 2. The Bayesian tree of the analyzed samples of the genus Dyspessa, inferred from COI sequences. Numbers at nodes indicate Bayesian posterior probability. Coloured bars (on the left) indicate hypothetical species-level clusters delineated by three different models of ABGD test (Jukes-Cantor (JC69), Kimura (K80), and Simple distance (SD), respectively). Scale bar represents the number of substitutions per site.

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 1 in A new species of Carpenter Moths (Lepidoptera, Cossidae) from Tarbagatai (NE Kazakhstan) and Altai (SW Siberia, Russia) Mountains

FIGURE 1. Map showing sampling localities of the analyzed specimens of Dyspessa ulgen. The red circle indicates the type locality.

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 12 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 12. Oscillograms and frequency spectra of the courtship song of Chorthippus dubius from Altai. Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in B–E). In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Different elements of the courtship song are indicated by numbers 1–2. Frequency spectra shown for the element 1 (F) and the element 2 (G).

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 14 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 14. Oscillograms and frequency spectrum of the courtship songs of two males (A, B) of Chorthippus angulatus from Almaty region. Song recordings are presented at two different speeds (faster oscillograms of the indicated parts of the songs shown in C–F). In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Different elements of the courtship song are indicated by numbers 1–3. Frequency spectra shown for the element 1 (G) and the element 2 (H).

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 9 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 9. Oscillograms and frequency spectrum of the courtship songs of two males (A, B) of Gomphocerus sibiricus from Akmola region. Song recordings are presented at three different speeds (faster oscillograms of the indicated parts of the songs shown in C–F). In all oscillograms the two upper lines are recordings of hind leg movements and the lower line is the sound recording. Different elements of the courtship song are indicated by numbers 1–3. Frequency spectrum shown for the element 1 (G).

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 10 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 10. Positions of antennae in a male of Gomphocerus sibiricus during courtship, when producing the element 1 (A), when producing the element 3 (B–F). The antennae are swung in such a way as they describe a cone when producing one longer pulse and 3–4 shorter pulses (see Fig. 9 E).

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 8 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 8. Positions of a male of Stenobothrus miramae during the element 3 of courtship. (A) The male hits a female several times with his head; (B) the male slowly raises both hind femora and keeps them over head.

opennotspecifiedDec 2020View details →
zenodo32/100

FIGURE 6 in Contributions to the study of the grasshopper (Orthoptera: Acrididae Gomphocerinae) courtship songs from Kazakhstan and adjacent territories

FIGURE 6. Movements of antennae during the element 3 of courtship in Myrmeleotettix pallidus. Figures A–F demonstrate successive stages of the antennae position.

opennotspecifiedDec 2020View details →

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