Showing 861 - 880 results of 101,056 for search '(( 5 ((((nm decrease) OR (a decrease))) OR (nn decrease)) ) OR ( a web decrease ))', query time: 1.54s Refine Results
  1. 861

    Effects of intracellular treatment with 5- or 40-nm AuNPs on AP properties in hippocampal CA1 neurons. by Seungmoon Jung (534987)

    Published 2014
    “…<p>(A) AuNPs of both sizes significantly decreased the latency to the first AP. …”
  2. 862

    Structure-Based Design of a Chemical Probe Set for the 5‑HT<sub>5A</sub> Serotonin Receptor by Anat Levit Kaplan (12126567)

    Published 2022
    “…Docking over 6 million molecules against a 5-HT<sub>5A</sub>R homology model identified 5 mid-μM ligands, one of which was optimized to <b>UCSF678</b>, a 42 nM arrestin-biased partial agonist at the 5-HT<sub>5A</sub>R with a more restricted off-target profile and decreased assay liabilities versus SB-699551. …”
  3. 863

    Structure-Based Design of a Chemical Probe Set for the 5‑HT<sub>5A</sub> Serotonin Receptor by Anat Levit Kaplan (12126567)

    Published 2022
    “…Docking over 6 million molecules against a 5-HT<sub>5A</sub>R homology model identified 5 mid-μM ligands, one of which was optimized to <b>UCSF678</b>, a 42 nM arrestin-biased partial agonist at the 5-HT<sub>5A</sub>R with a more restricted off-target profile and decreased assay liabilities versus SB-699551. …”
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  8. 868

    Representative 600 MHz <sup>1</sup>H-NMR spectra of urine showing the metabolite signals of 20 age-related metabolites (δ1–9). by Chih-Yung Chiu (571865)

    Published 2016
    “…<p>With increasing age, red up arrow indicates a detected increase in metabolite concentration, whereas down blue arrow indicates a detected decrease in metabolite concentration. 1, 3-Aminoisobutyric acid; 2, acetic acid; 3, creatinine; 4, creatine; 5, <i>N</i>-phenylacetylglycine; 6, hippuric aicd; 7, lactic acid; 8, <i>N</i>-acetylglutamic acid; 9, succinic acid; 10, glutamine; 11, citric acid; 12, dimethylamine; 13, <i>N</i>,<i>N</i>-dimethylglycine; 14, Trimethylamine <i>N</i>-oxide; 15, galactose; 16, lysine; 17, betaine; 18, lactose; 19, formic acid; 20, 1-methylnicotinamide.…”
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  13. 873

    Inverse relationship between poison exon usage and expression of multiple sodium channels during mouse brain development. by Yuliya Voskobiynyk (9954619)

    Published 2021
    “…<p>(A) <i>Scn1a</i> transcripts including exon 20N are highly expressed in the developing mouse brain and decrease dramatically after birth (aqua bars), with a corresponding developmental increase in <i>Scn1a</i> expression (blue bars). …”
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  16. 876

    Blocking of MC1R, MC2R or MC5R causes a decrease in the enucleation ratio of erythrocytes. by Eriko Simamura (720229)

    Published 2015
    “…Cell number is significantly decreased after treatment with anti-MC2R nAb for 5 days; however, treatment with anti-MC1R nAb or anti-MC5R nAb does not have a significant effect (n = 3, ANOVA). …”
  17. 877

    At E9.5 Actb<sup>−/−</sup> neural crest cells show a significant decrease of cadherin-11 expression. by Davina Tondeleir (426905)

    Published 2014
    “…<p>(A) Quantification of N-cadherin intensities in Actb<sup>+/+</sup> and Actb<sup>−/−</sup> migratory cells adjacent to the neural tube at E8.5 and E9.5 (left graph, Y-axis: relative intensities) and colocalization of N-cadherin with p75 in migratory cells at E8.5 and E9.5 (right graph, Y-axis: colocalization index on a scale from 0 to 1). …”
  18. 878

    Trend of temperature decrease in thermogradient freezer during the night from 7:00 P.M. to 5:00 A.M. by Alireza Hasanfard (13919335)

    Published 2022
    “…<p>Trend of temperature decrease in thermogradient freezer during the night from 7:00 P.M. to 5:00 A.M.…”
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    rVλ6Wil fibrils cause a decrease in cardiomyocytes MTT reduction without inducing cell death. by Helen P. McWilliams-Koeppen (116503)

    Published 2015
    “…(C) Cell number, quantified using crystal violet (black) did not decrease over 72 h of incubation with 1 μM rVλ6Wil fibrils despite a decrease in MMT reduction (grey; n = 3 samples per time point). …”