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496 results for “Tibetan Plateau”
Atmospheric boundary layer height and energy over the Tibetan Plateau
<p>Processed data of atmospheric boundary layer height and energy over the Tibetan Plateau. </p>
Data for: Proximity to oilseed rape fields affects plant pollination and pollinator-mediated selection on a co-flowering plant on the Tibetan Plateau
<p><span>The ecological effects of mass-flowering crops on pollinator abundance and species richness of neighboring habitats are well established, yet the potential evolutionary consequences remain unclear. We studied effects of proximity to a mass-flowering crop on the pollination of local co-flowering plants, and on patterns of natural selection on a pollination-generalized plant on the Tibetan Plateau. We recorded pollinator visitation rates and community composition at different distances (near vs. far) to oilseed rape (Brassica napus) fields in two habitat types, and quantified pollinator-mediated selection on attractive traits of Trollius ranunculoides. The proximity to oilseed rape increased pollinator visitation in neighboring alpine meadows and changed pollinator composition in neighboring shrub meadows. Trollius ranunculoides in the alpine meadow near oilseed rape received three times more pollinator visits (mainly bees), and consequently had a 16.5% increase in seed set, but also received slightly more heterospecific pollen per stigma. In contrast, pollinator visitation to T. ranunculoides in the shrub meadow near oilseed rape was three times lower (mainly flies), leading to 10.7% lower seed despite no effect on pollen deposition. The proximity to the oilseed rape field intensified pollinator-mediated selection on flower size and weakened selection on flower height of T. ranunculoides in the alpine meadow but did not affect phenotypic selection on either trait in the shrub meadow. Our study highlights context-dependent variation in plant-pollinator interactions close to mass-flowering oilseed rape, suggesting potential effects on the evolution of flower traits of native plants through altered pollinator-mediated selection. However, context dependence may make these effects difficult to predict.</span></p>
Earliest Phanerozoic intra-oceanic arc in the northern Tibetan Plateau reveals missing subduction process in the Proto-Tethys Ocean
<p>This supporting information includes tables that provide geochemical, zircon U-Pb and Lu-Hf and Sr-Nd isotopic data of volcanic rocks from the North Qaidam collisional belt.</p>
Subduction within the Proto-Tethys Ocean revealed by recognition of the earliest Phanerozoic intra-oceanic arc, northern Tibetan Plateau
<p><strong>Analytical methods</strong></p> <p><strong>Table S1</strong>. Whole-rock major (wt.%) and trace element (ppm) data for volcanic rocks in the Tuomoerrite area, North Qaidam belt.</p> <p><strong>Table S2</strong>. LA-ICP-MS zircon U-Pb data for dacites and gabbro in the Tuomoerrite area, North Qaidam belt.</p> <p><strong>Table S3</strong>. Zircon Lu-Hf isotopic data for Cambrian dacites and gabbro in the Tuomoerrite area, North Qaidam belt.</p> <p><strong>Table S4</strong>. Whole-rock Rb-Sr and Sm-Nd isotopic compositions for the volcanic rocks in the Tuomoerrite area, North Qaidam belt.</p>
Early–Middle Devonian paleomagnetic results from the Zhongba Microterrane, Tibetan Plateau: Evidence for its origin from the northern margin of Greater India
<p>raw paleomagnetic data and Palaeozoic detrital zircon data from the Zhongba Microterrane, South Qiangtang Terrane, Tethyan Himalayas and Lhasa Terrane</p>
Data and code for 'Transient knickpoint migrating modulated by fault activities on the Northeastern Tibetan Plateau margin: A case from the Yellow River '
<p> </p> <p>Kindly feel free to reach out to me (<a href="mailto:lizhch@smail.nju.edu.cn">lizhch@smail.nju.edu.cn</a>) if you have any queries or encounter issues with the 'codes'.</p>
Receiver function data on the Southeastern Tibetan Plateau (Dataset)
<p>The dataset about the study of Crustal Anisotropy Beneath the Southeastern Tibetan Plateau and the lateral Extension of the Plateau</p>
The 2022 Har Lake earthquake sequence highlights a complex fault system in the west Qilian Shan, northeastern Tibetan Plateau
<p>The dataset includes the InSAR-derived LOS displacements related to the 2022 Har Lake earthquake sequence in Qinghai province, China. </p>
Contrasting response of the water use efficiency to precipitation changes between the alpine meadow and alpine steppe over the Tibetan Plateau
<p>The file of AlpineGrassland_GrowingSeason_WUE is dataset of the growing season water use efficiency of alpine grassland over the tibetan plateau during 1982-2014.</p>
Selected data analyzed in the JGR Atmosphere manuscript "Atmospheric meridional circulation between South Asia and Tibetan Plateau caused by the change of planetary boundary layer depth."
<p>1. The PBL depth dataset including the PBL type (the convective boundary layer, the neutral boundary layer, and the stable boundary layer) and the calculated the PBL depths at the 19 stations for the 2013-2015 summers.</p> <p>2. The control experiment (WRF-CTL) and the MEP experiment (WRF-MEP) simulations results including PBL depth and geopotential height at 500 hPa at 00:00 UTC, 06:00 UTC, 12:00 UTC, and 18:00 and hourly sensible and latent heat. The simulation period was 1 June to 31 August 2015 with 30 hours from 12:00 UTC (20:00 Beijing time (BJT)) each day.</p>
Selected data analyzed in the JGR Atmosphere manuscript "Atmospheric meridional circulation between South Asia and Tibetan Plateau caused by the change of planetary boundary layer depth."
<p>1. The PBL depth dataset including the PBL type (the convective boundary layer, the neutral boundary layer, and the stable boundary layer) and the calculated the PBL depths at the 19 stations for the 2013-2015 summers.</p> <p>2. The control experiment (WRF-CTL) and the MEP experiment (WRF-MEP) simulations results including PBL depth and geopotential height at 500 hPa at 00:00 UTC, 06:00 UTC, 12:00 UTC, and 18:00 and hourly sensible, latent heat and thermal radiation (net longwave radiation). The simulation period was 1 June to 31 August 2015 with 30 hours from 12:00 UTC (20:00 Beijing time (BJT)) each day.</p>
Receiver-function datasets of the passive-source seismic profiles in the northeastern Tibetan plateau contributed by LRC
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Data from: History and evolution of alpine plants endemic to the Qinghai-Tibetan Plateau: Aconitum gymnandrum (Ranunculaceae)
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Data from: Phylogeography and evolution of a fungal-insect association on the Tibetan Plateau
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A dataset of sulfur content and density of vegetation on the Tibetan Plateau
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Data from: Extinction vs. rapid radiation: the juxtaposed evolutionary histories of coelotine spiders support the Eocene–Oligocene orogenesis of the Tibetan Plateau
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Decreased dust particles amplify the cloud cooling effect by regulating cloud ice formation over the Tibetan Plateau
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Data from: Demography and speciation history of the homoploid hybrid pine Pinus densata on the Tibetan Plateau
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Data from: Genetic adaptation of Tibetan poplar (Populus szechuanica var. tibetica) to high altitudes on the Qinghai-Tibetan Plateau
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Data from: A longitudinal cline characterizes the genetic structure of human populations in the Tibetan plateau
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Allen Brain Atlas
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DANDI Archive for NWB datasets
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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.