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205 results for “High-Altitude”
Introgression, admixture and selection facilitate genetic adaptation to high-altitude environments in Chinese cattle
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Data from: Genetic and phenotypic divergence between low- and high-altitude populations of two recently diverged cinnamon teal subspecies
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Data from: From pristine forests to high-altitude pastures: an ecological approach to prehistoric human impact on vegetation and landscapes in the western Italian Alps
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Data from: Effects of UVB radiation on grazing of two cladocerans from high-altitude Andean lakes
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<em>Strobilanthes sharavathiensis</em> (Acanthaceae), a new species from Ambaragudda, a high-altitude shola grassland, central Western Ghats, Karnataka, India
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Data from: Differential high-altitude adaptation and restricted gene flow across a mid-elevation hybrid zone in Andean tit-tyrant flycatchers
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The draft genome of the blood pheasant (Ithaginis cruentus): phylogeny and high-altitude adaptation
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Data from: Application of a novel haplotype-based scan for local adaptation to study high-altitude adaptation in rhesus macaques
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Data from: Life history evolution and cellular mechanisms associated with increased size in high-altitude Drosophila
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Data from: Use of ancient sedimentary DNA as a novel conservation tool for high-altitude tropical biodiversity
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Mid to late-Holocene palynomorph, charcoal and sediment data from three middle and high-altitude sediment cores from the Kashmir Valley
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Figure 5 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 5 Fore femur (A, B) and cerci (C–E) of Didymocorypha spp. A, B, D, ED. libaii sp. nov. CD. lanceolata (Fabricius). A Ventral view B dorsal view A, B, C, E male D female. Abbreviations: fb = femoral brush; ds = discoidal spines; gs = genicular spur; pvfs = posteroventral femoral spines.
Figure 4 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 4 Head of Didymocorypha spp., anterior view. A Male, D. lanceolata (Fabricius) B male, D. libaii sp. nov. (holotype) C female, D. libaii sp. nov. (paratype). Red arrows point to ocelli.
Figure 7 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 7 Distribution map of the distribution Didymocorypha spp. in South Asia and East Asia (Himalaya).○: D. lanceolata (Fabricius) ; * D. libaii sp. nov.
Figure 6 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 6 Male genitalia of Didymocorypha spp., Disarticulated genital complex, ventral view. AD. lanceolata (Fabricius) B, CD. libaii sp. nov. Abbreviations: L4A = sclerite extending over the ventral wall of left phallomere; L4B = sclerite extending over the dorsal wall of left phallomere; R3 = anteriorly extending sclerite of right phallomere; afa = phalloid apophysis; fda = main posterior lobe of right phallomere; pia = process posterolateral to pva of right phallomere; pva = process anteromesal to pia of right phallomere; paa = posterior process of left phallomere; sdp = secondary distal process.
Figure 1 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 1 Didymocorypha spp. body in dorsal view and ootheca. A, C Male B female D oothecae. AD. lanceolata (Fabricius) B–DD. libaii sp. nov. (holotype and paratype).
Figure 3 from: Wu C, Liu C-X (2020) New record of Didymocorypha Wood-Mason (Mantodea, Eremiaphilidae) from China, with description of a new high-altitude wingless mantis species in Asia. ZooKeys 922: 51-64. https://doi.org/10.3897/zookeys.922.47987
Figure 3 Adult and nymph of Didymocorypha libaii sp. nov. in natural habitat. A Adult male B nymphs C feeding adult female D copulating adults E ecological habitat.
Data from: Going to extremes for sodium acquisition: use of community land and high-altitude areas by mountain gorillas Gorilla beringei in Rwanda
Space use in mammals may be influenced not only by their primary foods, but also by localized sources of physiologically critical resources such as sodium-rich plants. We examined how sodium acquisition influences habitat use in mountain gorillas (Gorilla beringei) in Rwanda which have increased the amount of time they forage on community land outside of Volcanoes National Park (VNP), where eucalyptus (Eucalyptus spp.) tree bark is their most frequently eaten food. We measured sodium content in samples from 34 main dietary items and quantified sodium intake by 22 gorillas in three social groups over one-year. On a dry weight basis, eucalyptus bark contains 3100 mg Na/kg. In contrast, the four herbs most frequently exploited for food inside the park are relatively sodium-poor (<70mg/kg each). Further, sodium intake rates were highest when the gorillas were on community land. Of the two groups that fed outside of the park, one obtained 73% and the other one 45% of their sodium in that habitat despite only feeding for minimal amounts of time there. However, one group that did not feed on community land acquired 78% of its sodium in the subalpine and alpine zones through the consumption of pith of giant lobelias and groundsels. Obtaining sodium thus likely creates an incentive for the gorillas to leave the park and make forays into high-altitude habitat. Both strategies are not without risks: exiting their natural habitat and feeding on crops may increase human-wildlife conflict and visiting high-altitude areas may increase the risk of hypothermia.
Figure 5 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 5. Some of the species sampled in the present study:a. Rhionaeschna bonariensis. b. Coryphaeschna adnexa. c. Elasmothemis constricta. d. Erythemis attala. e. Erythemis plebeja. f. Erythrodiplax media. g. Hetaerina hebe. h. Cyanallagma nigrinuchale. i. Forcepsioneura sancta. Scale bar: 10 mm. / Algunas de las especies muestreadas en el presente estudio: a. Rhionaeschna bonariensis. b. Coryphaeschna adnexa. c. Elasmothemis constricta. d. Erythemis attala. e. Erythemis plebeja. f. Erythrodiplax media. g. Hetaerina hebe. h. Cyanallagma nigrinuchale. i. Forcepsioneura sancta. Barra de escala: 10 mm.
Figure 2 in Odonata (Insecta) in high-altitude fields and associated ecosystems in the Poços de Caldas Plateau, Brazil
Figure 2. Study area at the Poços de Caldas Plateau in the state of Minas Gerais, Brazil, and its respective location within Brazil (grey) and Minas Gerais state (white). / Área de estudio en la meseta de Poços de Caldas en el estado de Minas Gerais, Brasil, y su respectiva ubicación dentro de Brasil (en gris) y en el estado de Minas Gerais (en blanco).
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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)
ABODe is a University of Edinburgh DataShare dataset for behavior classification in group-housed mice using home-cage video, identities, bounding boxes, ground-plate positions, and annotator labels.
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.