Showing 681 - 700 results of 122,752 for search '(( 2 e decrease ) OR ( 5 ((((mean decrease) OR (fold decrease))) OR (a decrease)) ))', query time: 1.88s Refine Results
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    WNT3 decreases GCP proliferation by inhibiting SHH dependent gene transcription. by Sandrine L. Anne (489755)

    Published 2013
    “…<p>(<i>A</i>) WNT3 decreased proliferation of GCPs by 40.3± 5.0% of the control (Con) (n=3) as measured by [<sup>3</sup>H]-Thymidine incorporation assay. …”
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    The introduction of mutualisms into assembled communities increases their connectance and complexity while decreasing their richness. by Gui Araujo (22170819)

    Published 2025
    “…Parameter values: interaction strengths were drawn from a half-normal distribution of zero mean and a standard deviation of 0.2, and strength for consumers was made no larger than the strength for resources. …”
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    Fibrinogen decreases cardiomyocyte contractility through an ICAM-1-dependent mechanism-0 by John H Boyd (88940)

    Published 2011
    “…Acquired with group mean data, the curves demonstrate an LPS-induced increased end diastolic volume (EDV), maintenance of stroke volume (SV), and therefore a marked reduction of left ventricular ejection fraction (SV/EDV). E, end-systolic elastance.<p><b>Copyright information:</b></p><p>Taken from "Fibrinogen decreases cardiomyocyte contractility through an ICAM-1-dependent mechanism"</p><p>http://ccforum.com/content/12/1/R2</p><p>Critical Care 2008;12(1):R2-R2.…”
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    Fibrinogen decreases cardiomyocyte contractility through an ICAM-1-dependent mechanism-8 by John H Boyd (88940)

    Published 2011
    “…Acquired with group mean data, the curves demonstrate an LPS-induced increased end diastolic volume (EDV), maintenance of stroke volume (SV), and therefore a marked reduction of left ventricular ejection fraction (SV/EDV). E, end-systolic elastance.<p><b>Copyright information:</b></p><p>Taken from "Fibrinogen decreases cardiomyocyte contractility through an ICAM-1-dependent mechanism"</p><p>http://ccforum.com/content/12/1/R2</p><p>Critical Care 2008;12(1):R2-R2.…”
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