Showing 1 - 20 results of 70,539 for search '(( significantly lower decrease ) OR ( significant ((decrease rice) OR (decrease i)) ))', query time: 2.92s Refine Results
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    Capsaicin, pyridoxine, vincristine sulfate and ionomycin significantly decreased axon length ratio but only pyridoxine had no impact on neurotoxicity. by Fei San Lee (17282886)

    Published 2024
    “…(<b>C</b>) Pyr at 500 μM significantly decreased axon length ratio over time and was significantly lower than PBS control by day 3. …”
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    Data_Sheet_1_Co-application of biochar and compost with decreased N fertilizer reduced annual ammonia emissions in wetland rice.docx by J. Ferdous (8962736)

    Published 2023
    “…That experiment was conducted using the integrated plant nutrition system (IPNS; nutrient contents in organic amendments were subtracted from the full recommended fertilizer dose i.e., RD of chemical fertilizers) where six treatments with four replications were applied in each season: (T<sub>1</sub>) no fertilizer (control), (T<sub>2</sub>) RD, (T<sub>3</sub>) poultry manure biochar (3 t ha<sup>−1</sup>; pyrolyzed at 450°C) + decreased dose of recommended fertilizer (DRD), (T<sub>4</sub>) rice husk ash (3 t ha<sup>−1</sup>) + DRD, (T<sub>5</sub>) compost (3 t ha<sup>−1</sup>) + DRD, and (T<sub>6</sub>) compost (1.5 t ha<sup>−1</sup>)+ biochar (1.5 t ha<sup>−1</sup>) + DRD. …”
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    Longer <i>L</i><sub><i>h</i></sub> significantly decreases and delays the peak of the sound-evoked CAPs of SGN fibers. by Maral Budak (6680351)

    Published 2021
    “…CAP latencies were significantly higher for populations with <i>L</i><sub><i>h</i></sub>>1 μm and peak amplitudes were significantly lower for populations with <i>L</i><sub><i>h</i></sub>>2 μm. …”
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    Longer <i>L</i><sub><i>u</i></sub> significantly decreases and delays the peak of the sound-evoked CAPs of SGN fibers. by Maral Budak (6680351)

    Published 2021
    “…Latencies were significantly higher for populations with <i>L</i><sub><i>u</i></sub>>10 μm and peaks were significantly lower for populations with <i>L</i><sub><i>u</i></sub>>11 μm. …”
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    Domestication of rice may have changed its arbuscular mycorrhizal properties by modifying phosphorus nutrition-related traits and decreasing symbiotic compatibility by Yingwei Li (18623035)

    Published 2024
    “…</p><p dir="ltr">· The results revealed significantly lower mycorrhizal growth responses and colonization intensity in domesticated rice compared to wild rice, and this change of AM properties may be associated with the domestication modifications of plant phosphorus utilization efficiency at physiological and genomic levels. …”
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