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400 results for “the Far East of Russia”
Text-fig. 13. Dispersed platanoid cuticle. a: LM; b: SEM, upper surface. s – stoma; b – hair base. in Angiosperm Diversification In The Early Cretaceous Of Primorye, Far East Of Russia
Text-fig. 13. Dispersed platanoid cuticle. a: LM; b: SEM, upper surface. s – stoma; b – hair base.
Fig. 1 in Prevalence of Borrelia burgdorferi sensu lato and Borrelia miyamotoi in ixodid ticks in the Far East of Russia
Fig. 1. Map of the tick collection places in the Far East of Russia.
Text-fig. 16. Upper part of the Botchi thin-bedded plant-bearing tuffaceous beds. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)
Text-fig. 16. Upper part of the Botchi thin-bedded plant-bearing tuffaceous beds.
Text-fig. 14. Dembi plant-bearing strata (4 km to the south of the Dembi Bay). in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)
Text-fig. 14. Dembi plant-bearing strata (4 km to the south of the Dembi Bay).
Text-fig. 9. Lower part of a fossil woody stem in the tuffaceous beds at Siziman. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)
Text-fig. 9. Lower part of a fossil woody stem in the tuffaceous beds at Siziman.
Text-fig. 15. Detail of the Dembi site. in Mid-Latitude Palaeogene Floras Of Eurasia Bound To Volcanic Settings And Palaeoclimatic Events - Experience Obtained From The Far East Of Russia (Sikhote-Alin') And Central Europe (Bohemian Massif)
Text-fig. 15. Detail of the Dembi site.
Figure 13 in A new water mite species of the genus Hygrobates Koch, 1837 (Acari, Hydrachnidia, Hygrobatidae) from Far East of Russia
Figure 13. Hygrobates (Rivobates) ezoensis: 13 – pedipalp (after Matsumoto et al. 2005).
Fig. 4 in Campanian (Late Cretaceous) nautiloids from Sakhalin, Far East Russia
Fig. 4. Criteria for systematic classification of nautiloids used herein.
Text-fig. 6. The locality of early angiosperm near the Palets Cape. in An Angiosperm Dominated Herbaceous Community From The Early - Middle Albian Of Primorye, Far East Of Russia
Text-fig. 6. The locality of early angiosperm near the Palets Cape.
Text-fig. 4. Schematic sections of the Frentsevka Formation in different areas. in An Angiosperm Dominated Herbaceous Community From The Early - Middle Albian Of Primorye, Far East Of Russia
Text-fig. 4. Schematic sections of the Frentsevka Formation in different areas.
Text-fig. 2. Localities of early angiosperms near Bolshoy Kamen town. in An Angiosperm Dominated Herbaceous Community From The Early - Middle Albian Of Primorye, Far East Of Russia
Text-fig. 2. Localities of early angiosperms near Bolshoy Kamen town.
FIGURE 6 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 6: Tarsonemus striatus n. sp., male: A – left leg I in dorsal view; B – left leg II in dorsal view.
FIGURE 3 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 3: Tarsonemus striatus n. sp., female: A – left leg I in dorsal view; B – left leg II in dorsal view.
FIGURE 2 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 2: DIC micrographs of Tarsonemus striatus n. sp. female: A – central part of prodorsal shield; B – central part of tergite C; C – central parts of tergites D and EF; D – pharynx; E – central part of posterior sternal plate; F – central part of anterior sternal plate.
FIGURE 4 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 4: Tarsonemus striatus n. sp., female: A – left leg III in ventral view; B – left leg IV in ventral view.
FIGURE 7 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 7: Tarsonemus striatus n. sp., male: A – left leg III in dorsal view; B – left leg IV in dorsal view.
FIGURE 8 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 8: DIC micrographs of Tarsonemus striatus n. sp. male: A – central part of prodorsal shield; B – central part of tergite CD; C – right part of posterior sternal plate.
FIGURE 11 in A new species of Tarsonemus (Acari: Tarsonemidae) associated with the bark beetle, Polygraphus proximus (Coleoptera: Curculionidae: Scolytinae) from the Far East of Russia
FIGURE 11: SEM micrographs of Tarsonemus striatus n. sp. females, phoretic on four-eyed fir bark beetle, Polygraphus proximus: A – ventral view of the beetle with phoretic mite (arrow); B, C – detailed view.
Plant sedimentary ancient DNA data from Far East Russia
<p>Woody plants are expanding into the Arctic in response to the warming climate. The impact on arctic plants is not well understood due to the limited knowledge about plant assembly rules. Past plant diversity over long time series is rare. Here, we applied sedimentary ancient DNA metabarcoding targeting the P6 loop of the chloroplast <i>trnL</i> gene to a sediment record from Lake Ilirney (central Chukotka, Far Eastern Russia) covering the last 28 thousand years. Our results show that forb-rich steppe-tundra and dwarf-shrub tundra dominated during the cold climate before 14 ka, while deciduous erect-shrub tundra was abundant during the warm period since 14 ka. <i>Larix</i> invasion during the late Holocene substantially lagged behind the likely warmest period between 10 and 6 ka, where the vegetation coverage was densest. We reveal highest richness during 28–23 ka and a second richness peak during 13–10 ka, with both periods being accompanied by low shrub abundance. During the cold period before 14 ka, rich communities were phylogenetically clustered, suggesting low genetic divergence in the communities despite the great number of species. This probably originates from environmental filtering along with niche differentiation due to limited resources under harsh environmental conditions. In contrast, during the warmer period after 14 ka, rich communities were phylogenetically overdispersed. This results from a high number of species which were found to harbor high genetic divergence, likely originating from an erratic recruitment process in the course of warming. Some of our evidence may be of relevance for inferring future arctic plant assembly rules and diversity changes. By analogy to the past, we expect a lagged response of tree invasion. Plant richness may overshoot in the short term; in the long-term, however, the ongoing expansion of deciduous shrubs will eventually result in a phylogenetically more diverse community.</p>
FIGURE 1 in Two new species and new records of caddisflies (Insecta: Trichoptera) from the Far East of Russia
FIGURE 1. Lype lubaretsi, new species, holotype (male genitalia): A. Lateral view; B. Dorsal view; C. Ventral view; D. Phallus, distal part, dorsal view.
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Allen Brain Atlas
Allen Brain Atlas is an Allen Institute collection of brain map atlases, datasets, APIs, and analysis tools covering mouse, human, and non-human primate brain resources.
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.