Showing 581 - 600 results of 99,101 for search '(( 50 ng decrease ) OR ( 5 ((wt decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.26s Refine Results
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    GCase activity is significantly decreased in the brain and liver of the homozygous <i>GBA1</i> D409V KI mouse model at 4, 8, and 12 months of age. by Nicole K. Polinski (10947787)

    Published 2021
    “…In whole brain homogenate (A,C) and liver homogenate (B,D), GCase activity is significantly decreased in the <i>GBA1</i> D409V KI homozygous (HOM) mice as compared to C57Bl/6 wild type (WT) mice (n = 7/group). …”
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    Nasal mucociliary clearance was decreased in <i>Ttll1</i><sup>−/−</sup> mice. by Toshiyuki Iwata (419270)

    Published 2015
    “…In the <i>Ttll1</i><sup>−/−</sup> mice, a larger amount of Evans blue persisted in the nasal cavity and a lesser amount was swallowed compared with that in the wild-type (WT) mice (mean ± SEM, n = 5, *P < 0.005 by two-tailed Student's t test).…”
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    Brain and liver GCase activity are significantly decreased in heterozygous <i>GBA1</i> D409V KI mice, with varying differences in glucosphingolipid lipids in brain and liver. by Nicole K. Polinski (10947787)

    Published 2021
    “…(A-B) GCase levels as assessed by the CBE/4-MU method are significantly decreased in the het <i>GBA1</i> D409V KI mice at 5 months of age in both brain (A) and liver (B). …”
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    Severe decreases of TECs and impaired TEC expansion in the absence of mTORC1/Raptor. by Hong-Xia Wang (288934)

    Published 2016
    “…The gating strategy is shown in <a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.1002370#pbio.1002370.s003" target="_blank">S2 Fig</a>. …”
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    Global Land Use Change Impacts on Soil Nitrogen Availability and Environmental Losses by Jing Wang (6206297)

    Published 2025
    “…However, how global land use changes impact soil N supply and potential N loss remains elusive. By compiling a global data set of 1,782 paired observations from 185 publications, we show that land use conversion from natural to managed ecosystems significantly reduced NNM by 7.5% (−11.5, −2.8%) and increased NN by 150% (86, 194%), indicating decreasing N availability while increasing potential N loss through denitrification and nitrate leaching. …”
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