Showing 1 - 20 results of 51,134 for search '(( 50 ((mean decrease) OR (_ decrease)) ) OR ((( 10 nm decrease ) OR ( _ points decrease ))))*', query time: 0.78s Refine Results
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    Decreased cell stiffness after dissociation of intercellular adhesion. by Kristina Seiffert-Sinha (627059)

    Published 2014
    “…The corresponding cross section height measurements show a height decrease by slightly less than 100 nm (from ∼10 nm to −100 nm in the encircled area; lower panel); the arrow in the AFM images points to an intact intercellular connection before cutting (<b>E1</b>) and the disappearance thereof after cutting (<b>E2</b>). …”
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    Proteasome activity was decreased in the <i>myc-rpt6-S119A</i> mutant. by Esther Magdalena Marquez-Lona (4183126)

    Published 2017
    “…The mean ± SEM rate of Suc-LLVY-AMC cleavage is decreased in the <i>myc-rpt6-S119A</i> mutant compared to the WT and <i>myc-rpt6-S119D</i> strains. …”
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    Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s. by Djaloul Karboua (16510091)

    Published 2023
    “…<p>Scenario (6): Parameter variation (50% decrease)—With 5 N.m load applied at t = 0.3s.…”
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    Decreased sensitivity of coculture HIV spread to RAL predicts multiple infections per cell. by Mikaël Boullé (3329427)

    Published 2016
    “…Blue dashed line represents parametrization of the cell-free infection response to RAL in terms of IC<sub>50</sub> (1.9 nM) and hill coefficient (0.7). Red dashed line represents the fit of coculture infection using the decreased sensitivity to RAL (<a href="http://www.plospathogens.org/article/info:doi/10.1371/journal.ppat.1005964#sec008" target="_blank">Materials and methods</a>). …”
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    AKT inhibition decreases neuroblast populations. by Maria R. Aburto (186884)

    Published 2012
    “…Otic vesicles were isolated from HH18 chicken embryos, made quiescent and cultured for 20 h in serum-free culture medium without additions (0S, a) or in the presence of IGF-I (10 nM, b), LY294002 (LY, 25 µM, c) or AKTi VIII (AKTi, 50 µM, d). …”
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