Showing 14,441 - 14,460 results of 105,702 for search '(( 50 ((mean decrease) OR (we decrease)) ) OR ( 5 ((wt decrease) OR (a decrease)) ))', query time: 1.03s Refine Results
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    S1 Data - by Toru Hosokawa (364158)

    Published 2023
    “…The bicaudate ratio increased in 38/58 (65.5%) patients, Evans index increased in 35/58 (60.3%) patients, and brain volume by volumetry decreased in 46/58 (79.3%) patients from the first to the second measurement, with significant increases in the bicaudate ratio (<i>P</i> < 0.0001) and Evans index (<i>P</i> = 0.0005) and a significant decrease in the brain volume by volumetry (<i>P</i> < 0.0001). …”
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    Nt5e is a trypsin-cleavable surface protein of <i>S. sanguinis</i> and affects platelet aggregation lag time. by Jingyuan Fan (159998)

    Published 2012
    “…All samples contained 15 µg of protein solubilized in 1% (w/v) SDS sample buffer. These samples were electrophoresed on a 10% gel, and stained with Coomassie Blue. …”
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    Table_5_Computation of Antigenicity Predicts SARS-CoV-2 Vaccine Breakthrough Variants.pdf by Ye-Fan Hu (10307357)

    Published 2022
    “…To address this, we sought to establish a computational model to predict the antigenicity of SARS-CoV-2 variants by sequence alone. …”
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    Evolution of Carbon Nanofiber-Supported Pt Nanoparticles of Different Particle Sizes: A Molecular Dynamics Study by Hongye Cheng (1416415)

    Published 2014
    “…Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to analyze the structural evolution of fishbone-type carbon nanofiber-supported Pt nanoparticles, with particle size ranging from 5.6 to 30.7 Å. Simulated results indicate that upon adsorption the distribution of first-shell Pt–Pt coordination number and radial distribution function change significantly in Pt nanoparticles up to 2 nm in size and that the restructuring degree of the Pt nanoparticles decreases with particle size, which is attributed both to the reduced binding energy per Pt atom bonded to support and to the increased cohesive energy of the Pt nanoparticles. …”
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    Evolution of Carbon Nanofiber-Supported Pt Nanoparticles of Different Particle Sizes: A Molecular Dynamics Study by Hongye Cheng (1416415)

    Published 2014
    “…Molecular dynamics simulations employing the ReaxFF reactive force field have been carried out to analyze the structural evolution of fishbone-type carbon nanofiber-supported Pt nanoparticles, with particle size ranging from 5.6 to 30.7 Å. Simulated results indicate that upon adsorption the distribution of first-shell Pt–Pt coordination number and radial distribution function change significantly in Pt nanoparticles up to 2 nm in size and that the restructuring degree of the Pt nanoparticles decreases with particle size, which is attributed both to the reduced binding energy per Pt atom bonded to support and to the increased cohesive energy of the Pt nanoparticles. …”
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