Showing 1 - 20 results of 23 for search '(( 100 ns decrease ) OR ( 10 ((greater decrease) OR (((_ decrease) OR (a decrease)))) ))~', query time: 0.75s Refine Results
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    Glial 5-HT<sub>2a</sub> receptors are necessary and rate limiting for experience-dependent synaptic glomeruli pruning. by Vanessa Kay Miller (19775496)

    Published 2024
    “…The Or42a OSN innervation volume with glial <i>5-HT</i><sub><i>2A</i></sub><i>R</i> OE is very significantly decreased in comparison to the control EB condition (<i>p</i> = 4.64 × 10<sup>−10</sup>). …”
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    Enhanced electropermeabilization of peroxidized cells with both ultra-short and conventional electric pulse treatments. by P. Thomas Vernier (142483)

    Published 2013
    “…<p>(A). The fluorescence of calcein-loaded DC-3F (Chinese hamster lung fibroblast) cells exposed to 1000 10 ns, 2.5 MV/m pulses with a 10 Hz repetition rate decreases after 10 min, indicating membrane permeabilization. …”
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    Increases in degenerating cortical neurons at 2 months followed by significant loss of cortical neurons and volume at 4 months in <i>Psen</i> cDKO mice. by Mary Wines-Samuelson (365524)

    Published 2013
    “…However, subsequent ages reveal a gradual decrease in cortical thickness in <i>Psen</i> cDKO mice. …”
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    EGFR inhibitor differentially modulates the expression of antigen presenting molecules and PD-L1 on HaCaT cells. by Jin S. Im (234975)

    Published 2016
    “…While the expression of MHC-I and MHC-II on HaCaT cells was further up-regulated in the presence of erlotinib and IFNγ at all dose range tested for MHC-I and at a greater than 1pg/ml for MHC-II compared to IFNγ alone, IFNγ induced overexpression of PD-L1 was abrogated by the addition of erlotinib to IFNγ at a greater than 100 pg/ml. …”
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    Mitochondrial ROS generated by reverse electron transport in muscles is necessary for critical period heat stress to change NMJ development. by Daniel Sobrido-Cameán (5049743)

    Published 2025
    “…</i> 25°C control) leads to increased aCC NMJ terminal size and decreased postsynaptic GluRIIA, while not affecting subunit GluRIIB expression. …”