Showing 4,901 - 4,920 results of 18,297 for search 'significant ((((gap decrease) OR (a decrease))) OR (mean decrease))', query time: 0.66s Refine Results
  1. 4901

    Data. by Rim Kooli (15426816)

    Published 2025
    “…The level of oxidative stress in sperm was significantly decreased after 24h of incubation with PRP at 2% (p = 0.001), 5% (p = 0.001) and 10% (p = 0.001) when compared to the control group. …”
  2. 4902

    Primer sequences and information. by Lai Jiang (2401513)

    Published 2025
    “…This study focuses on the role of the TRIM37-PEX5 axis in regulating oxidative stress in oligodendrocytes and myelin repair, exploring its potential as a novel therapeutic target for MS. Through bioinformatics analysis, TRIM37 was found to be significantly downregulated in MS patients. …”
  3. 4903

    The original plotting data. by Hongmei Qian (538647)

    Published 2024
    “…<div><p>Background</p><p>Glaucoma, characterized by a high incidence and significant ocular harm, has been elucidated through various mechanisms. …”
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  10. 4910

    Semen characteristics in the study population. by Rim Kooli (15426816)

    Published 2025
    “…The level of oxidative stress in sperm was significantly decreased after 24h of incubation with PRP at 2% (p = 0.001), 5% (p = 0.001) and 10% (p = 0.001) when compared to the control group. …”
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  15. 4915

    Sequence of <i>DpAP2</i> promoter. by Lingru Ruan (18995544)

    Published 2024
    “…It was speculated that MeJA significantly decreased expression of <i>DpAP2</i> gene, then the decreasing <i>DpAP2</i> expression significantly inhibited expression of some key enzyme genes such as <i>PSY</i>, <i>PDS</i> and <i>GGPS</i> in carotenoid biosynthesis pathway. …”
  16. 4916

    Predicted <i>cis</i>-acting elements in <i>DpAP2</i> promoter. by Lingru Ruan (18995544)

    Published 2024
    “…It was speculated that MeJA significantly decreased expression of <i>DpAP2</i> gene, then the decreasing <i>DpAP2</i> expression significantly inhibited expression of some key enzyme genes such as <i>PSY</i>, <i>PDS</i> and <i>GGPS</i> in carotenoid biosynthesis pathway. …”
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