Showing 15,661 - 15,680 results of 104,500 for search '(( i wt decrease ) OR ( 5 ((point decrease) OR (((nn decrease) OR (a decrease)))) ))', query time: 1.74s Refine Results
  1. 15661

    Steady-state concentration dependence of the effect of nicotine on <i>I</i><sub>KAch_ACH</sub> at -50 mV (above) and -110 mV (below) on a relative scale (currents under nicotine re... by Jiří Šimurda (7486118)

    Published 2019
    “…<p>The shift of the concentration dependence at -110 mV towards inhibition was simulated by a decrease of the activation related parameter <i>h</i><sub>2_1</sub> (from 0.085 to 0.037). …”
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  3. 15663

    Cell cycle progression is impaired in <i>radA</i> plants. by Nicolas Chevigny (12537052)

    Published 2022
    “…<b>(F)</b> RT-qPCR analysis of the expression of a set of cell cycle related genes in 10-day-old WT and <i>radA</i> seedlings, revealing significant activation of <i>SMR5</i> and <i>ANAC085</i>. …”
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  5. 15665

    Table1_Photosynthetic Production Determines Bottom Water Oxygen Variations in the Upwelling Coastal South China Sea Over Recent Decades.docx by Xiaowei Zhu (24440)

    Published 2021
    “…The ratio records showed oscillations in varying degrees and exhibited no clear trends before ∼1980s, after which, however, there occurred a persistent decreasing trend or basically remained at lower values. …”
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  7. 15667
  8. 15668

    RSV infection in Nb<i>ATG3</i> and Nb<i>ATG5</i>-silenced <i>N</i>. <i>benthamiana</i>. by Xiangxiang Zhang (498122)

    Published 2021
    “…<p><b>(A)</b> Silencing of Nb<i>ATG3</i> and Nb<i>ATG5</i> individually did not cause obvious phenotypes in <i>N</i>. …”
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  11. 15671

    Seed Predation by the Shore Crab <i>Carcinus maenas</i>: A Positive Feedback Preventing Eelgrass Recovery? by Eduardo Infantes (3559475)

    Published 2016
    “…Burying the seeds 2 cm below the sediment surface prevented seed predation in the laboratory and decreased predation in the field, constituting a way to decrease seed loss during restoration. …”
  12. 15672

    <i>CSN5</i> or <i>Nedd8</i> mutations have a diverse effect on dendritic branching. by Inna Djagaeva (369627)

    Published 2013
    “…(B) In <i>CSN5<sup>N</sup></i> mutants, ddaC neurons frequently show decreased dendritic branching. …”
  13. 15673

    Validation of hTERT mRNA as a direct target of miR-512-5p in CNE cells. by Jun Li (6494)

    Published 2015
    “…(B) MiR-512-5p resulted in a significant decrease in luciferase expression in hTERT-3’UTR transfected cells compared with the scramble, while MiR-512-5p caused no statistical change in luciferase expression in mut-hTERT-3’UTR compared with the scramble(C) miR-512-5p mimic led to down-regulation of hTERT and TRF2 in CNE cells. …”
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  16. 15676

    Image1_The serotonin receptor 5-HT2A modulates lifespan and protein feeding in Drosophila melanogaster.pdf by Allyson S. Munneke (14200148)

    Published 2022
    “…Therefore, serotonin signaling through receptor 5-HT2A is likely recruited to promote motivation for protein intake, and chronic reduction of protein-drive through loss of 5-HT2A signaling leads to a lower protein set-point adaptation, which influences physiology, decreases feeding, and increases lifespan. …”
  17. 15677

    Image2_The serotonin receptor 5-HT2A modulates lifespan and protein feeding in Drosophila melanogaster.pdf by Allyson S. Munneke (14200148)

    Published 2022
    “…Therefore, serotonin signaling through receptor 5-HT2A is likely recruited to promote motivation for protein intake, and chronic reduction of protein-drive through loss of 5-HT2A signaling leads to a lower protein set-point adaptation, which influences physiology, decreases feeding, and increases lifespan. …”
  18. 15678

    Image3_The serotonin receptor 5-HT2A modulates lifespan and protein feeding in Drosophila melanogaster.pdf by Allyson S. Munneke (14200148)

    Published 2022
    “…Therefore, serotonin signaling through receptor 5-HT2A is likely recruited to promote motivation for protein intake, and chronic reduction of protein-drive through loss of 5-HT2A signaling leads to a lower protein set-point adaptation, which influences physiology, decreases feeding, and increases lifespan. …”
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