Showing 141 - 160 results of 16,440 for search '(( 5 point decrease ) OR ((( 5 mg decrease ) OR ( 50 ((we decrease) OR (nn decrease)) ))))', query time: 0.66s Refine Results
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    Fig 5 - by Wenping Dong (3854437)

    Published 2021
    Subjects:
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    mGluR5 receptor decreased glycinergic currents. by Zi-Yang Zhang (4988555)

    Published 2019
    “…The original traces were taken at the time points indicated by the numbers 1–3. (<b>C</b>) The inhibitory effect of DHPG on GlyR-IPSCs was blocked by MPEP (92.4 ± 4.4% of baseline at 15–20 min post-DHPG, <i>t</i>[5] = 1.573, <i>p</i> = 0.177) but not by CPCCOEt (53.5 ± 3.7% of baseline at 15–20 min post-DHPG, <i>t</i>[5] = 14.343, <i>p</i> < 0.001). …”
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    Complete data. by Jan Víteček (11434774)

    Published 2024
    “…The rt-PA became increasingly less efficient for clots larger than 50 μl at a clinically relevant concentration of 1.3 mg/l. …”
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    Fig 4 - by Jan Víteček (11434774)

    Published 2024
    “…The rt-PA became increasingly less efficient for clots larger than 50 μl at a clinically relevant concentration of 1.3 mg/l. …”
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    Temporal profiles of the key BO-NN features. by Julia Berezutskaya (9080269)

    Published 2020
    “…<p><b>(a)</b> Autocorrelation profiles of 53 key BO-NN features. Per feature, a black line shows the time point where the autocorrelation drops below .5. …”
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    Stability of Plasmonic Mg-MgO Core–Shell Nanoparticles in Gas-Phase Oxidative Environments by Vladimir Lomonosov (15213945)

    Published 2024
    “…Furthermore, we show that the reactivity of Mg-MgO nanoplates with water vapor (3.5 vol % in N<sub>2</sub>) decreases with temperature, with no oxidation of the Mg core detected from 200 to 400 °C. …”
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    Stability of Plasmonic Mg-MgO Core–Shell Nanoparticles in Gas-Phase Oxidative Environments by Vladimir Lomonosov (15213945)

    Published 2024
    “…Furthermore, we show that the reactivity of Mg-MgO nanoplates with water vapor (3.5 vol % in N<sub>2</sub>) decreases with temperature, with no oxidation of the Mg core detected from 200 to 400 °C. …”