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ShareScore release 0.9.0
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622 results for “High altitude”
Air Temperatures at High Altitude, Kanchanjunga Himal, Eastern Nepal, Version 1
This data set provides air temperature (1.5 m above ground surface) data from the Kanchanjunga Himal, eastern Nepal. Air temperature was monitored from November 1998 to November 1999 at three locations (Tengkoma, Lhonak, and Ghunsa) at altitudes of 3410, 4750 and 6012 m ASL. Although temperature was measured at one-hour intervals, only daily mean values are provided.
Locus-specific and genome-wide analysis of adaptations to hypoxia in iPSC-derived endothelium from a population adapted to high altitude [RNA-Seq]
GEO Series GSE271456. Homo sapiens. 20 samples. Type: Expression profiling by high throughput sequencing.
miRNA expression in Placental Tissue from high altitude European and Tibetan women
GEO Series GSE168028. Homo sapiens; synthetic construct. 20 samples. Type: Non-coding RNA profiling by array.
Solar UV-B regulation of high altitude maize
GEO Series GSE1807. Zea mays. 45 samples. Type: Expression profiling by array.
Gene expression in Placental Tissue from high altitude European and Tibetan women
GEO Series GSE168021. Homo sapiens. 20 samples. Type: Expression profiling by array.
Circulating microRNAs reprogramming are involved in early acclimatization to high altitude in humans
GEO Series GSE89486. Rattus norvegicus; Mus musculus; Homo sapiens. 44 samples. Type: Non-coding RNA profiling by array.
miRNA and mRNA expression in placental tissue from high altitude pregnant women
GEO Series GSE168130. Homo sapiens; synthetic construct. 40 samples. Type: Expression profiling by array; Non-coding RNA profiling by array.
Intermittent short-duration reoxygenation protects against simulated high altitude-induced pulmonary hypertension in rats
GEO Series GSE160926. Rattus norvegicus. 12 samples. Type: Expression profiling by high throughput sequencing.
Circulating microRNAs as a signature predicting the occurrence of Acute Mountain Sickness before exposure to high altitude
GEO Series GSE90500. Homo sapiens; Mus musculus; Rattus norvegicus. 22 samples. Type: Non-coding RNA profiling by array.
Transcriptomic Modifications in Developmental Cardiopulmonary Adaptations to Chronic Hypoxia Using a Murine Model of Simulated High Altitude Exposure
GEO Series GSE140146. Rattus norvegicus. 54 samples. Type: Expression profiling by high throughput sequencing.
Whole transcriptomic landscape and regulatory network of High-Altitude Pulmonary Edema
GEO Series GSE260910. Homo sapiens. 12 samples. Type: Expression profiling by high throughput sequencing.
FIGURE 3. A–B in Qorimayus, a new genus of relictual, high-altitude harvestmen from western Argentina (Arachnida, Opiliones, Gonyleptidae) reveals trans-Andean phylogenetic links
FIGURE 3. A–B: Qorimayus alticola (Ringuelet, 1962) comb. nov., holotype ♂ (MACN), A: right leg IV (coxa to tibia), prolateral view. B: Left tibia and patella IV, retrolateral view. Scale bars: 1 mm. C–E: schematic representation (not at scale) of characters #30 (coxa III, length relative to coxa II) and #31 (relative length of apical Cx II projected onto Cx III width). Dashed vertical lines: projection of landmarks X and Y, as referred to in the characters list (Table 2), the portion of coxa III surpassing X is shaded. Arc (α): projection of the apical coxa II onto coxa III width. C: Tricommatus brasiliensis Roewer, 1912 (from Kury 2014), #30=0, #31=2; D: Eusarcus hastatus Sørensen, 1884, #30=0, #31=2; E: Cynorta conspersa (Perty, 1833) (from Kury et al. 2007), #30=2, #31=1.
deodara and permafrost soil data set of high altitude
<p>This is 16s rRNA amplicon sequences obtained by Dr. Ashwani Kumar</p>
Subspecies and Distribution. L. t. timidus Linnaeus, 1758 — Scandinavia S to 59° N, N Russia (S to 57° N to 58° N) to E of Ural Mts, Estonia, perhaps Poland, and Altai and Beita Mts in N Xinjiang (China); from Sweden extending in hybrid zones with the subspecies sylvaticus to S coast of Norway and W Latvia. L. t. abet Kuroda, 1938 — Kurile Is (Russia). L. t. ainu Barrett-Hamilton, 1900 — Hokkaido (Japan). L. t. begitschevi Koljuschev, 1936 — Taimyr Peninsula (Russia). L. t. gichiganus J. A. Allen, 1903 — C Yakutia, Kamchatka and Okhotsk Sea coast (Russia). L. t. hibernicus Bell, 1837 — Ireland. L. t. kolymensis Ognev, 1922 — NE Siberia (Russia). L. t. kozhevnikovi Ognev, 1929 — C Russia from 57° to 58°N, whereit intergrades with the nomonotypical timidus S to 53° N. The W boundary is unclear. L. t. lugubris Kastschenko, 1899 — Siberian Altai Mts (Russia). L. t. mordeni Goodwin, 1933 — Russian Far East (Ussuri Valley and lower and middle Amur River) and Heilongjiang (China). L. t. ori Kuroda, 1928 — Sakhalin (Russia). L. t. scoticus Hilzheimer, 1906 — Scotland. L. t. sibiricorumJohansen, 1923 — W & SW Siberia (Russia), N Kazakhstan, and Tacheng Mts in N Xinjiang (China). L. t. sylvaticus Nilsson, 1831 —S Sweden, extending in hybrid zones with nominotypical timidus to S coast of Norway and W Latvia. L. t. transbaikalicus Ognev, 1929 — Trans-Baikal region in E Siberia (Russia) and E Inner Mongolia (= Nei Mongol, China). L. t. varronis Miller, 1901 — at high altitudes in the Alps, C Europe. in Leporidae
Subspecies and Distribution. L. t. timidus Linnaeus, 1758 — Scandinavia S to 59° N, N Russia (S to 57° N to 58° N) to E of Ural Mts, Estonia, perhaps Poland, and Altai and Beita Mts in N Xinjiang (China); from Sweden extending in hybrid zones with the subspecies sylvaticus to S coast of Norway and W Latvia. L. t. abet Kuroda, 1938 — Kurile Is (Russia). L. t. ainu Barrett-Hamilton, 1900 — Hokkaido (Japan). L. t. begitschevi Koljuschev, 1936 — Taimyr Peninsula (Russia). L. t. gichiganus J. A. Allen, 1903 — C Yakutia, Kamchatka and Okhotsk Sea coast (Russia). L. t. hibernicus Bell, 1837 — Ireland. L. t. kolymensis Ognev, 1922 — NE Siberia (Russia). L. t. kozhevnikovi Ognev, 1929 — C Russia from 57° to 58°N, whereit intergrades with the nomonotypical timidus S to 53° N. The W boundary is unclear. L. t. lugubris Kastschenko, 1899 — Siberian Altai Mts (Russia). L. t. mordeni Goodwin, 1933 — Russian Far East (Ussuri Valley and lower and middle Amur River) and Heilongjiang (China). L. t. ori Kuroda, 1928 — Sakhalin (Russia). L. t. scoticus Hilzheimer, 1906 — Scotland. L. t. sibiricorumJohansen, 1923 — W & SW Siberia (Russia), N Kazakhstan, and Tacheng Mts in N Xinjiang (China). L. t. sylvaticus Nilsson, 1831 —S Sweden, extending in hybrid zones with nominotypical timidus to S coast of Norway and W Latvia. L. t. transbaikalicus Ognev, 1929 — Trans-Baikal region in E Siberia (Russia) and E Inner Mongolia (= Nei Mongol, China). L. t. varronis Miller, 1901 — at high altitudes in the Alps, C Europe.
FIG. 5 in A New Species of Silverside of the Genus Odontesthes (Atheriniformes: Atherinopsidae) with Hypertrophic Lips from a High-Altitude Basin in Southern Brazil
FIG. 5. Pectoral girdle in dorsal view. (Left) Odontesthes humensis, left side, anterior to left, UFRGS 22497, 130.3 mm SL; (Right) Odontesthes crossognathos, right side, anterior to left, paratype, UFRGS 28830, 134.6 mm SL. Arrows indicate the dorsomedial wing surpassing the suture between scapula (S) and coracoid (C). Scale bar ¼ 2 mm.
Fig. 2 in New Genus and Species of High-Altitude Flightless Diestotini from the West Indies (Coleoptera: Staphylinidae: Aleocharinae)
Fig. 2. Aleomallus yaque, new genus and species. a) Female, sternite VII, b) Female, sternite VIII, c) Female, tergite VII, d) Female, tergite VIII, e) Male, sternite VII, f) Male, sternite VIII, g) Male, tergite VII, h) Male, tergite VIII. Scale bars = 0.1 mm.
Fig. 3 in New Genus and Species of High-Altitude Flightless Diestotini from the West Indies (Coleoptera: Staphylinidae: Aleocharinae)
Fig. 3. Aleomallus yaque, new genus and species. a) Dorsal aspect of labrum, b) Ventral aspect of labrum (epipharynx), c) Ventral aspect of labium and mentum, d) Ventral aspect of left mandible, e) Ventral aspect of right mandible, f) Ventral aspect of maxilla. Scale bars = 0.1 mm.
FIGURE 9 in The Cladocera (Crustacea: Branchiopoda) of six high altitude water bodies in the North Chilean Andes, with discussion of Andean endemism 2430
FIGURE 9. Macrothrix atahualpa, thoracic limbs of adult parthenogenetic female from Laguna Chungará, Chile. A–C. Distal portion of limb II and two smallest setae of its inner distal lobe; D. Limb I, anterior view; E–G. Stiff setae on inner portion of limb I; H–I. Limb II and distal armature of its gnathobase, posterior view; J–K. Limb III and its inner portion, posterior view; L. Limb IV, posterior view; M. Limb V, posterior view. Scale bars 0.1 mm.
FIGURE 10 in The Cladocera (Crustacea: Branchiopoda) of six high altitude water bodies in the North Chilean Andes, with discussion of Andean endemism 2430
FIGURE 10. Pleuroxus fryeri sp. nov., adult parthenogenetic female from Crater Lake, Licancabur Volcano, Chile- Bolivia border. A–B. Lateral and ventral view; C. Head, lateral view; D. Head shield; E. Tip of rostrum; F–G. Dorsal head pores; H–J. Labrum, labral keel and its apex; K. Antenna I; L. Antenna II; M. Apical seta of antenna II. Scale bars 0.1 mm.
FIGURE 2 in The Cladocera (Crustacea: Branchiopoda) of six high altitude water bodies in the North Chilean Andes, with discussion of Andean endemism 2430
FIGURE 2. Daphnia paggii sp. nov., female from Salar de Lagunillas, Chile. A–B. Antenna I, lateral view; C. antenna I, distal view; D. Antenna II, anterior view; E. Sensory setae at coxal portion of antenna II; F–G. Distal segments of antennal exopod and endopod; H. Apical swimming seta of antenna II; I–J. Ephippial female, lateral and posterior view; K. Dorsal portion of ephippium; L. Sculpture in central portion of ephippium. Scale bars 1 mm for I–J; 0.1 mm for A–H, K–L.
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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.