يعرض 4,681 - 4,700 نتائج من 18,433 نتيجة بحث عن 'significant ((((((step decrease) OR (a decrease))) OR (we decrease))) OR (mean decrease))', وقت الاستعلام: 0.50s تنقيح النتائج
  1. 4681
  2. 4682

    Vps34 supports Treg maintenance in lymphoid and non-lymphoid tissues. حسب Erienne G. Norton (9612079)

    منشور في 2025
    "…Two-tailed Student <i>t</i> test (<b>A</b>–<b>D</b>, <b>F</b>–<b>I</b>) or Benjamini–Hochberg test (<b>E</b>); NS, not significant. …"
  3. 4683

    Chromatin accessibility analysis of perinatal Vps34-deficient Tregs. حسب Erienne G. Norton (9612079)

    منشور في 2025
    "…AP-1-related transcription factors with predicted decreased activity are labeled. See also <a href="http://www.plosbiology.org/article/info:doi/10.1371/journal.pbio.3003074#pbio.3003074.s015" target="_blank">S7 Table</a>. …"
  4. 4684
  5. 4685
  6. 4686
  7. 4687

    Vps34 orchestrates transcriptional and epigenetic remodeling events corresponding to terminal eTreg differentiation during perinatal life. حسب Erienne G. Norton (9612079)

    منشور في 2025
    "…Data are shown as mean ± s.e.m. (<b>D</b>). Wilcoxon rank-sum test (<b>A</b>, <b>B</b>; <b>J</b>, right), Benjamini–Hochbert test (<b>C</b>), two-tailed Student <i>t</i> test (<b>D</b>, <b>I</b>), Fisher’s exact test (<b>F</b>–<b>H</b>), or bionomial test (<b>J</b>, left); NS, not significant. …"
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  9. 4689
  10. 4690
  11. 4691
  12. 4692
  13. 4693
  14. 4694
  15. 4695
  16. 4696
  17. 4697
  18. 4698

    Summary of related studies. حسب Most. Fatematuz Zohora (19429152)

    منشور في 2024
    "…Traditional methods like the Banker’s algorithm provide solutions but suffer from limitations such as static process handling, high time complexity, and a lack of real-time adaptability. To address these challenges, we propose the Dynamic Banker’s Deadlock Avoidance Algorithm (DBDAA). …"
  19. 4699
  20. 4700

    Time complexity of different safety algorithms. حسب Most. Fatematuz Zohora (19429152)

    منشور في 2024
    "…Traditional methods like the Banker’s algorithm provide solutions but suffer from limitations such as static process handling, high time complexity, and a lack of real-time adaptability. To address these challenges, we propose the Dynamic Banker’s Deadlock Avoidance Algorithm (DBDAA). …"