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333 results for “Kyrgyzstan”
Figure 27. Biogeographic reconstructions for selected clades, resulting from the S in A new theropod dinosaur from the Callovian Balabansai Formation of Kyrgyzstan
Figure 27. Biogeographic reconstructions for selected clades, resulting from the S-DIVA analysis. Legend: A, north-eastern Europe; B, southern South America; C, North America; D, northern Africa; E, north-eastern Asia; F, south-western Europe; G, Central Asia; H, Australia; I, Antarctica; J, South-East Asia; L, Central South America. For further details on these regions see the Material and methods section. For full results of the S-DIVA analysis see Fig. S7 in the Supporting information.
Figure 25 in A new theropod dinosaur from the Callovian Balabansai Formation of Kyrgyzstan
Figure 25. Phylogenetic position of A. kyrgyzicus. Simplified reduced consensus tree resulting from the equally weighted parsimony analysis. For full results see Supporting information, Fig. S2.
Figure 10 in A new theropod dinosaur from the Callovian Balabansai Formation of Kyrgyzstan
Figure 10. Right partial dorsal rib of A. kyrgyzicus, IGB 2-16, in posterior (A) and anterior (B) views. Scale bar is 5 cm.
Figs 1–14 in A revision of Sunius XV. Six new species from Kyrgyzstan and the Himalaya, and additional records (Coleoptera: Staphylinidae: Paederinae)
Figs 1–14: Sunius alaianus spec. nov. (1–6), S. marratus spec. nov. (7–10), and S. virilis spec. nov. (11–14): habitus (1); forebody (2, 7, 11); male sternite VIII (3, 8, 12); aedeagus in lateral and in ventral view (4, 9–10, 13–14); ventral process of aedeagus in ventral view (5); internal structures of aedeagus in ventral view (6). Scale bars: 1: 1.0 mm; 2, 7, 11: 0.5 mm; 3, 8, 12: 0.2 mm; 4–6, 9–10, 13–14: 0.1 mm.
Figs 15–26 in A revision of Sunius XV. Six new species from Kyrgyzstan and the Himalaya, and additional records (Coleoptera: Staphylinidae: Paederinae)
Figs 15–26: Sunius deplectens spec. nov. (15–18), S. dearmatus spec. nov. (19–22), and S. migrus spec. nov. (23–26): forebody (15, 19, 23); male sternite VIII (16, 20, 24); aedeagus in lateral and in ventral view (17–18, 21–22, 25–26). Scale bars: 15, 19, 23: 0.5 mm; 16, 20, 24: 0.2 mm; 17–18, 21–22, 25–26: 0.1 mm.
Figure 4. Kokartus honorarius, CCMGE 2 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 4. Kokartus honorarius, CCMGE 2/12937, part of skull roof. A, B, photograph and interpretive drawing, as exposed. C, digital reconstruction in lateral view based on high-resolution computed tomography. Abbreviations: fr, frontal; frf, frontal facet; lp, lateral process of frontal; nas, nasal; par, parietal; ph?, phalange?; vr, ventral ridge. Scale bars = 5 mm.
Figure 1 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 1. Geographical position of the Kokartus localities (Kyzylsu 1; Kugart 1; Nichke 1) in the Kugart River Basin (asterisk) in the eastern part of the Fergana Depression (the upper map is redrawn from Averianov et al. 2005 and the lower map is modified from http://maps.google.ru/maps).
Figure 7. Kokartus honorarius, CCMGE 1 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 7. Kokartus honorarius, CCMGE 1/12937, partial disarticulated skull. A, B, digital reconstruction of the underside and exposed sides based on high-resolution computed tomography. Abbreviations: den, dentary; hb1, hypobranchial 1; hb2, hypobranchial 2; mx, maxilla; nas, nasal; pmx, premaxilla; pra?, prearticular?; prfr?, prefrontal?; prsph, parasphenoid; pt, pterygoid; sq, squamosal; vom, vomer. Scale bars = 10 mm.
Figure 3 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 3. Kokartus honorarius, ZIN PH 65/47. Partial skull as exposed. A, B, photograph and interpretive drawing. C, digital reconstruction of part the specimen based on high-resolution computed tomography. Abbreviations: apt, anterior process of pterygoid; fr, frontal; par, parietal; ph, phalanges; pt, pterygoid; sq, squamosal; vr, ventral ridge; vrsq, ventral ramus of squamosal. Scale bars = 5 mm.
Figure 5. Kokartus honorarius, CCMGE 6 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 5. Kokartus honorarius, CCMGE 6/12937 (A–E) and CCMGE 2/11998 (F–H). A–E, as exposed. D, E, digital reconstruction of the specimen based on high-resolution computed tomography. H, digital reconstruction of the specimen based on high-resolution computed tomography. F–G, photograph and interpretive drawing. Abbreviations: den, dentary; exo, exoccipital; mx?, maxilla?; par?, parietal?; pra, prearticular; sq, squamosal. Scale bars = 5 mm.
Figure 10 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 10. Strict consensus of 44 most parsimonious trees showing the position of karaurids. Eocaecilia is highlighted by *. Synapomorphies supporting Batrachia (A), Caudata (B), and Karauridae (C) clades: Clade A, 65(2), dermal sculpturing: little to none; 130(2), Meckelian fossa: absent; 165(1), extended transverse processes: present. Clade B, 2(2), skull: trunk: 0.20–0.29; 51(1), parietal–squamosal contact: present; 92(2), anterior palatine: palatine absent; 102(1), denticles on parasphenoid: absent; 201(2), deltapectoral crest: prominent; 220(1), spinal cord supports: present. Clade C, 65(2), dermal sculpturing: tubercules and short ridges.
Figure 9 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 9. Skull reconstructions of Kokartus honorarius (A–D). A, B, redrawn from Nesov et al. (1996). C, D, new reconstruction. E, skull of larva of branchiosaurid Apateon gracilis, redrawn from Schoch & Fröbisch (2006). F, two centres of ossification of the squamosal in a larva of Ranodon sibiricus (IV stage), redrawn from Lebedkina (1979). G, two centres of ossification of the squamosal in a larva of Rana esculenta at the end of metamorphosis, redrawn from Lebedkina (1979). Abbreviations: caud, otic capsule; den, dentary; dsq, dorsal ossification of squamosal, fr, frontal; mam, m. adductor mandibulae; Mc, Meckel's cartilage; mdm, m. depressor mandibulae; nas, nasal; pa, ascendens process of palatoquadratal cartilage; par, parietal; pmx, premaxilla; prsph, parasphenoid; po, otic process of palatoquadratal cartilage; ppt, pterygoid process of palatoquadratal cartilage; pt, pterygoid; qj, quadratojugal; sq, squamosal; st, supratemporal; vsq, ventral ossification of squamosal.
Figure 2. Kokartus honorarius, CCMGE 1 in Cranial anatomy of the stem salamander Kokartus honorarius (Amphibia: Caudata) from the Middle Jurassic of Kyrgyzstan
Figure 2. Kokartus honorarius, CCMGE 1/12937. Partial skull as exposed. A, B, photograph and interpretative drawing. Abbreviations: cor, coronoid; den, dentary; fr, frontal; hb1, hypobranchial 1; hb2, hypobranchial 2; if, internarial fenestra; mx, maxilla; nas, nasal; par, parietal; ph, phalanges; pmx, premaxilla; pra?, prearticular?; prfr?, prefrontal?; prsph, parasphenoid; pt, pterygoid; sq, squamosal; vom, vomer. Scale bars = 5 mm.
FIGURE 1 in A new genus of the family Alexarasniidae (Insecta: Embiida) from the Triassic of Kyrgyzstan
FIGURE 1. Madygembia rasnitsyni gen et sp. nov., forewing. A, Photograph of holotype. B, Sketch drawing of holotype. Scale bars = 3 mm.
Social protection Kyrgyzstan
<p>Data and document article Social Protection Kyrgyzstan </p>
FIGURE 12 in Redescriptions of the Triassic Notocupes beetles (Archostemata: Ommatidae) from Kyrgyzstan and South Kazakhstan
FIGURE 12. Notocupes oxypygus, paratype (PIN, 1361/128, part). A, Dry photo. B, Interpretative line drawing.
FIGURE 9 in Redescriptions of the Triassic Notocupes beetles (Archostemata: Ommatidae) from Kyrgyzstan and South Kazakhstan
FIGURE 9. Notocupes rostratus, paratype (PIN, 2240/66). A, Mirrored photo of dry counterpart. B, Photo of dry part. C, Tubercles on the body. D, Interpretative line drawing of part. Abbreviations: cx.cv, coxal cavities.
FIGURE 11 in Redescriptions of the Triassic Notocupes beetles (Archostemata: Ommatidae) from Kyrgyzstan and South Kazakhstan
FIGURE 11. Notocupes oxypygus, holotype (PIN, 1240/6, counterpart). A, Wetted with 95% ethanol. B, Dry photo. C, Interpretative line drawing.
FIGURE 8 in Redescriptions of the Triassic Notocupes beetles (Archostemata: Ommatidae) from Kyrgyzstan and South Kazakhstan
FIGURE 8. Notocupes rostratus, holotype (PIN, 2555/1664). A, Mirrored photo of dry counterpart. B, Photo of dry part. C, Interpretative line drawing of part. D, General scheme of elytra. Abbreviations: fem, femur.
FIGURE 7 in Redescriptions of the Triassic Notocupes beetles (Archostemata: Ommatidae) from Kyrgyzstan and South Kazakhstan
FIGURE 7. Notocupes tenuis, paratype (PIN, 2555/1683). A, Mirrored photo of wetted with 95% ethanol counterpart. B, Dots in tubercles on the body. C, Dry photo of part. D, Interpretative line drawing of part.
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Allen Brain Atlas
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Annotated Behaviour and Observability Dataset (ABODe)
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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.