Showing 21 - 40 results of 20,077 for search '(((( 50 ((a decrease) OR (nn decrease)) ) OR ( 2 fold decrease ))) OR ( 50 ms decrease ))', query time: 0.62s Refine Results
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    Repetitive stress induces a decrease in sound-evoked activity. by Ghattas Bisharat (20706928)

    Published 2025
    “…These mice exhibited a minimal change in noise-evoked PPy activity when comparing the first and second week of imaging (2-way ANOVA, F = 1.79, <i>p</i> = 0.11, post hoc baseline w1 50 dB: baseline w2 50 dB <i>p</i> = 1 Bonferroni corrected, nested ANOVA (mouse nested within session) F = 1.76, <i>p</i> = 0.12, mean ± SE). …”
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    <i>Kdm6a</i> conditional KO mice have decreased repopulating potential in serial competitive transplantation assays. by Ling Tian (107492)

    Published 2021
    “…Significant differences in the chimerism of SLAM cells compared to whole BM were found in KO-F mice (55.2-fold increase in CD45.2<sup>+</sup> KO-F SLAM cells as compared to CD45.2<sup>+</sup> cells in the whole BM, p = 0.0163) and KO-M mice (11.31-fold increase in CD45.2<sup>+</sup> KO-M SLAM cells as compared to CD45.2<sup>+</sup> cells in the whole BM, p = 0.0010). …”
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    TUDCA decreases ER stress in HOX neonatal rat lungs. by Kirkwood A. Pritchard Jr. (13449794)

    Published 2022
    “…<p>(<b>A</b>) The expression levels of ER stress markers (P-PERK 0.6±0.1-fold, p<0.001, n = 5; PERK 0.7±0.1-fold, p = 0.00364, n = 5; P-IRE1α 0.6±0.0-fold, p<0.001, n = 5; IRE1α 0.6±0.1-fold, p<0.001, n = 5; GRP78 0.8±0.1-fold, p<0.001, n = 5; cleaved ATF6 0.1±0.0-fold, p<0.001, n = 5; spliced XBP1 0.3±0.0-fold, p<0.001, n = 5; 2 males and 3 females) are all decreased while the N-glycosylated VEGFR2 is increased (3.5±0.2-fold, p<0.001, n = 5) in HOX neonatal lungs at P10 indicating TUDCA can attenuate hyperoxia-induced ER stress. …”
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    Genes whose expression was decreased by 1 mM ouabain by more than 2-fold. by Larisa V. Smolyaninova (3600053)

    Published 2019
    “…<p>Genes whose expression was decreased by 1 mM ouabain by more than 2-fold.</p>…”
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    Juvenile demyelination leads to a substantial decrease in potassium currents in PV interneurons of the PFC. by Sara Hijazi (21656615)

    Published 2025
    “…Scale: 500 pA, 100 ms. <b>B</b>. I–V curves showing a significant decrease in Kv amplitude in PV interneurons from mice that underwent juvenile demyelination. …”