Showing 421 - 440 results of 134,670 for search '(( 2 c decrease ) OR ( 5 ((step decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 2.05s Refine Results
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    Transaldolase deficiency causes a starvation-like response that decreases animal fat content and rewires lipid metabolism gene expression. by Christopher F. Bennett (3875731)

    Published 2017
    “…N2 fed <i>EV(RNAi)</i> (mean 17.5±0.1 days, n = 366), N2 fed <i>tald-1(RNAi)</i> (mean 20.1±0.1 days, n = 397), <i>nhr-49(nr2041)</i> fed <i>EV(RNAi)</i> (mean 11.5±0.1 days, n = 310), <i>nhr-49(nr2041)</i> fed <i>tald-1(RNAi)</i> (mean 12.9±0.1 days, n = 333). …”
  3. 423

    Spatial stability is decreased in APP/PS1 mice in both dCA1 and vCA1. by Udaysankar Chockanathan (18510288)

    Published 2024
    “…<p>(A) In dCA1, stability score was significantly decreased in APP/PS1 mice relative to C57BL/6 mice (mean ± std: C57BL/6 = -0.009 ± 0.292, APP/PS1 = -0.1845 ± 0.256, p < 10<sup>−6</sup>, two-sided Wilcoxon rank-sum test, n<sub>C57BL/6</sub> = 295 units from 5 recording sessions, n<sub>APP/PS1</sub> = 167 units from 4 recording sessions). …”
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    Activation of GluR5 increased neuronal excitability in interneruons but decreased excitability in pyramidal neurons. by Long-Jun Wu (47043)

    Published 2013
    “…Resting membrane potential for this neuron was −66.6 mV and the holding current was 66.9 pA. (H) Pooled data showed that ATPA (3 µM) increased firing rate of interneurons (n = 6) while decreased that of pyramidal neurons (n = 5). …”
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    Classification and regression tree: CYP3A5 phenotype discriminates between cases and tolerants (EM = normal metabolizers, IM and PM = decrease function, UM and UMH = increase function). by Luciana Kase Tanno (785410)

    Published 2015
    “…<p>Classification and regression tree: CYP3A5 phenotype discriminates between cases and tolerants (EM = normal metabolizers, IM and PM = decrease function, UM and UMH = increase function).…”
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    Decreased Serum Level of miR-146a as Sign of Chronic Inflammation in Type 2 Diabetic Patients by Lucy Baldeón R. (674016)

    Published 2014
    “…<div><p>Background</p><p>There is increasing evidence that chronic inflammation is an important determinant in insulin resistance and in the pathogenesis of type 2 diabetes (T2D). MicroRNAs constitute a newly discovered system of cell regulation and in particular two microRNAs (miR-146a and miR-155) have been described as regulators and biomarkers of inflammation.…”
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    FABP5 down regulation increases inflammation but decreases innate immunity in primary NHBE cells. by Fabienne Gally (260470)

    Published 2013
    “…</b> CS exposure significantly enhances IL-8 secretion in the basolateral supernatant of primary NHBE cell cultures knocked down for FABP5. <b>C.</b> CS exposure decreases β-defensin 2 mRNA expression on FABP5 knocked down primary NHBE cells. …”
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