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124 results for “crust”
Data for paper entitled "Origin of the high conductivity anomalies in the mid-lower crust of the Tibetan Plateau: Dehydration melting of garnet amphibolites"
<p>The data base includes the original data of the submitted paper to JGR:SE as listed below:</p> <p>(1) R1040</p> <p>(2) R1055</p> <p>(3) R1056</p> <p>(4) R1094</p> <p>(5) R1105</p> <p>(6) R1106</p> <p>(7) Data for figure 7</p>
FIGURE 1 in The first squamulose Thelocarpon species (Thelocarpaceae, Ascomycota) discovered in the biological soil crusts in the Bolivian Andes
FIGURE 1. Thelocarpon andicola (holotype). A, initial subglobose perithecioid ascomata, forming a single thalline warts surrounding by thalline squamules. B, young squamulose thallus with six ascomata. C, mature large thallus with numerous ascomata. D, cross section of thalline wart with ascoma showing surrounding algal sheath, thin cortical layer and yellow-pruinose outer layer. Scales: A–C—500 µm, D—50 µm.
Structural data for "Structural and rheological evolution of brittle fault zones in mafic crust: Implications for the strength of oceanic transform faults"
<p>Structural data for "Structural and rheological evolution of brittle fault zones in mafic crust: Implications for the strength of oceanic transform faults"</p>
GPS data set used in the paper "Anelastic response of the Earth's crust underneath the Canary Islands revealed from ocean tide loading observations"
<p>Data set of continuous GPS observations at CVAN site in Gran Canaria (Canary Islands, Spain). The period of observation spans from July 3, 2013 to November 30, 2015. Data was acquired during the execution of the research project GCL2011-25494 of the Spanish Research Agency. </p> <p>This data set belongs to the Research Group ‘Geodesia’ of the University Complutense of Madrid, Spain, and has been used in the paper "Anelastic response of the Earth's crust underneath the Canary Islands revealed from ocean tide loading observations", by Jose Arnoso, Machiel S. Bos, Maite Benavent, Nigel T. Penna, Sergio Sainz-Maza, submitted to Geophysical Journal International, 2022.</p>
Functional diversity of experimental annual plant assemblages drives plant responses to biological soil crusts in gypsum systems
<p>1. Biological soil crusts (BSC) are complex biotic aggregates comprised of lichens, cyanobacteria, algae, and other microorganism that are known to differently affect plant development along life cycle by selecting plant functional traits based on species-specific effects. In addition, functional differences between interacting species should modulate their response ability to other environmental factors. Thus, it should be expected that the effects of the BSC on plants will be significantly determined by the own functional diversity in the community.</p> <p>2. To understand the multiple effects of BSC and the extent to which the functional diversity of interacting plant species can modulate their effects on the development of coexisting species, we applied an experimental approach by manipulating the initial functional diversity of the entire annual plant community and BSC conditions in a common garden trial. We crossed three sorts of assemblages built on the basis of plant stature (combinations of only large, or only small, or diverse sized plant species in pots) with three lichen-dominated BSC disturbance scenarios (intact, or tiny mechanically disaggregated, or absent portions of BSC).</p> <p>3. Biological soil crusts strongly affected the establishment and development of gypsophilous annual plants in a complex, multifaceted manner, which shifted throughout the plant life cycle. We demonstrated that lichen-dominated BSC could act as a major physical barrier to the establishment of annual plants at a heterogeneous fine spatial scale. Such a restrictive effect was particularly marked in presence of intact BSC. However, after annual plants overcame the restrictions imposed by BSC, the same biotic layer facilitated plant growth and fitness, regardless of its physical integrity, resulting in larger plants producing more fruits.</p> <p>4. Importantly, our results suggest that the functional diversity structure of the community may also drive growth and fitness of coexisting species by activating alternative coexistence mechanisms such as niche partitioning or competition symmetry. This study highlights the importance of plant neighbourhood features for the performance of interacting species, and confirms a novel, experimental way to explore the effects of community diversity on plants for the interpretation of assembly mechanisms.</p>
Differences in Scattering Properties of the Shallow Crusts of Earth, Mars, and the Moon Revealed by P-Wave Receiver Functions - Dataset
<p>This version includes three parts. The first part is the seismic data set of Earthquakes, Marsquakes, and Moonquakes used in "Differences in Scattering Properties of the Shallow Crusts of Earth, Mars, and the Moon Revealed by P-Wave Receiver Functions" by Shi et al. (2023). In the data set of Earthquakes and Marsquakes, the direct P wave starts after 120 s. In the data set of Moonquakes, the direct P wave starts after 50 s. The second part is the velocity models used in the article for the Earth, Mars, and Moon. The third part is the code used to reproduce all the figures in the main text.</p>
Pre-CSRM: A 3-D seismic model of the shallow crust in continental China
<p>This high-resolution shallow three-dimensional seismic model is constructed for the top 10 km of the upper crust in continental China, based on the constraints of P polarization, Rayleigh wave ellipticity and receiver function obtained from records of <strong>3848</strong> seismic stations during 1990 and 2017. The model has a spatial resolution of 0.3 degree * 0.3 degree in the north-south seismic belt and the trans-north China orogen, and 0.5 degree * 0.5 degree in the rest of continental China (except the Tarim basin and southwest Tibet with no station coverage). The seismic constraints used for the construction of the model consist of the <strong>5,439,702</strong> polarization angle measurements from the P-wave waveforms of 9361 tele-seismic earthquakes, the short-period (4 - 8 s) Rayleigh wave ellipticity estimated from the continuous waveforms of seismic ambient noise, and the stacked receiver functions estimated from <strong>2,125,021</strong> original receiver functions calculated based on the waveforms of 9361 tele-seismic events. Please click on <a href="https://doi.org/10.5281/zenodo.8103561"><strong>link</strong></a> for the datasets.</p> <p>中国大陆区域地壳顶部10 km范围内高分辨率浅层三维地震学模型以从中国大陆区域1990 至 2017 年间 <strong>3848</strong> 个台站原始数据提取的 P 波偏振、瑞利波椭率和接收函数作为约束。该模型在南北地震带和华北造山带区域的空间分辨率为 0.3 度 * 0.3 度,在中国大陆其他区域的空间分辨率为 0.5 度 * 0.5 度 (除没有台站覆盖的塔里木盆地和青藏高原西南区域)。构建模型的地震学约束包括从 9361 个远震 的 P 波波形测量的 <strong>5,439,702 </strong>个偏振角度、从连续背景噪声波形测量的短周期 (4 - 8 s) 瑞利波椭率频散、和利用从 9361 个远震事件提取的 <strong>2,125,021</strong> 条接收函数计算得到的单台叠加接收函数。下载上述数据库请点击<strong><a href="https://doi.org/10.5281/zenodo.8103561">链接</a></strong>。</p> <p><strong>Reference</strong>: Xiao, X., Cheng, S., Wu, J., Wang, W., Sun, L., Wang, X., & Wen, L. (2021). Shallow seismic structure beneath the continental China revealed by P-wave polarization, Rayleigh wave ellipticity and receiver function. Geophysical Journal International, 225(2), 998-1019. <strong><a href="https://doi.org/10.1093/gji/ggab022">Paper link</a></strong></p> <p>If you face any problem or issue in the usage of this model, please feel free to communicate with the corresponding author Xiao Xiao (<strong>xiaox.seis@gmail.com</strong>). </p>
Data file for: Magnetotelluric imaging of the central Himalayan crust away from rift zones
<p>The magnetotellurics data were used to study the crustal electrical structure of the central Himalayan Orogenic Belt, conducted by Institute of Geophysical and Geochemical Exploration, Chinese Academy of Geological Sciences. The data file of <a href="https://zenodo.org/api/files/34fde6b7-246f-4736-bfbc-e1cc86e51ec1/pxr7.dat?versionId=b064e5eb-eb14-409b-bacc-fc6bd89a9a27">pxr7.dat</a> was generated by the Matlab code EM3DVP.</p> <p>You are recommended to refer to the Kelbert et al., 2014 paper: https://doi.org/10.1016/j.cageo.2014.01.010 for a brief understanding of the data file formats.</p>
Supplementary material: animated GIF of null space shuttle with shortening of the subducted Iberian crust.
<p>Supplementary material to the paper: </p><p>Geologically constrained geometry inversion with and null-space navigation to explore alternative geological scenarios: a case study in the Western Pyrenees. <br>Jeremie Giraud, Mary Ford, Guillaume Caumon, Lachlan Grose, Vitaliy Ogarko, Roland Martin, Paul Cupillard. </p><p>Note that the profile A-B shown here is more to the west than the profile shown in the paper. The image shows the full model inclusive of padding cells.</p>
Efficacy Study Between Two Different Dosages of an Antiparasitic in Patients With Crusted Scabies
ClinicalTrials.gov study NCT02841215. IPD Sharing: UNDECIDED. Countries: 1. Publications: 0.
Knee Medial Collateral Ligament Recovery After Pie-Crusting Release Technique
ClinicalTrials.gov study NCT06863077. IPD Sharing: NO. Countries: 1. Publications: 2.
Top-down effects on biological soil crust function
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Snail mucus increases the CO2 efflux of biological soil crusts
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Data and supporting information for: From source rock to cinnabar – how the giant mercury deposits in earth’s crust formed
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Data from: Biological soil crusts modulate nitrogen availability in semi-arid ecosystems: insights from a Mediterranean grassland
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Functional diversity of experimental annual plant assemblages drives plant responses to biological soil crusts in gypsum systems
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Multiple diversity facets of crucial microbial groups in biological soil crusts promote soil multifunctionality
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Data from: Warming reduces the growth and diversity of biological soil crusts in a semi-arid environment: implications for ecosystem structure and functioning
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Data from: Extensive yellow crusts below limestone overhangs: a new taxon close to a minute epiphytic lichen
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Data from: Linking biological soil crust attributes to the multifunctionality of vegetated patches and interspaces in a semiarid shrubland
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International Brain Laboratory public data
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OpenNeuro
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