Showing 19,541 - 19,560 results of 21,342 for search '(( significant decrease decrease ) OR ( significant ((mean decrease) OR (a decrease)) ))', query time: 0.76s Refine Results
  1. 19541

    Image 4_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.pdf by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  2. 19542

    Table 1_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.docx by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  3. 19543

    Manuscript FAM22 for submission.docx by Mehmet Bilen (21219992)

    Published 2025
    “…</p><p><br></p><p dir="ltr">The findings reveal that the addition of FAM22 significantly enhanced combustion efficiency. Most notably, the thermal energy output of the system increased by 18.97%, indicating a substantial improvement in heat transfer and utilization. …”
  4. 19544

    Evaluation of heavy hydrocarbon liquid in the Eastern Dahomey Basin, Southwestern Nigeria (case study of Agbabu Bitumen in Ondo State) by Oluwatoyin O. Akinsete (21633970)

    Published 2025
    “…Agbabu bitumen was found to have a high content of saturates and aromatics. Viscosity decreases as pressure increases, while solubility reduces as temperature increases. …”
  5. 19545

    Image 3_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.pdf by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  6. 19546

    Image 1_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.pdf by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  7. 19547

    Image 2_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.pdf by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  8. 19548

    Supplementary file 1_ZKSCAN3 promotes ovarian cancer cell proliferation by increasing HSPB1 expression.docx by Qian Ke (9164990)

    Published 2025
    “…Through RNA-Seq and chromatin immunoprecipitation (ChIP)-seq, HSPB1 is identified as a target gene of ZKSCAN3. HSPB1 expression is significantly decreased upon suppressing ZKSCAN3 expression. …”
  9. 19549

    Natural selection diagram. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  10. 19550

    Improved optimization results. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  11. 19551

    Gene comparison map before and after mutation. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  12. 19552

    Recombinant gene map. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  13. 19553

    model comparison (Idle/%). by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  14. 19554

    Comparison chart of use of each node. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  15. 19555

    Original optimization results. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  16. 19556

    Selection of crossing point. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  17. 19557

    Operator parameter setting of improved GA. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  18. 19558

    Product supply sequence diagram. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  19. 19559

    Crossed offspring chromosomes. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”
  20. 19560

    GA iteration graph. by Yanchun Li (248761)

    Published 2025
    “…Additionally, the variation in node utilization rates significantly decreased from 30.1% to 12.25%, markedly enhancing resource scheduling efficiency and overall balance within the supply chain.…”