Showing 1,901 - 1,920 results of 19,556 for search '(( significant increase decrease ) OR ( significant ((degs decrease) OR (a decrease)) ))', query time: 0.65s Refine Results
  1. 1901

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  2. 1902

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  3. 1903

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  4. 1904

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  5. 1905

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  6. 1906

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  7. 1907

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  8. 1908

    FT-IR results. by Caglar Akcay (6910697)

    Published 2025
    Subjects:
  9. 1909

    IQGAP1 is a protein that plays a critical role in regulating the level of apoptosis in endothelial cells. by Shaojun Huang (12489901)

    Published 2025
    “…<p>(A) The Annexin V–FITC/propidium iodide (PI) assay results indicate that Si-IQGAP1 can slightly decrease the apoptosis rate of normal cells, whereas knocking down IQGAP1 in PA-induced cells (PA + Si-IQGAP1) can significantly reduce the apoptosis rate. …”
  10. 1910
  11. 1911
  12. 1912

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  13. 1913

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  14. 1914

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  15. 1915

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  16. 1916

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  17. 1917

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  18. 1918

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  19. 1919

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”
  20. 1920

    Heterogeneous Condensation on Simplified Viral Envelope Protein Structures by Kawkab Ahasan (18784843)

    Published 2025
    “…The rapid initial condensation fills up the gap between the pillars, reducing the active surface area and leading to a gradual decrease and a plateau in the condensation rate. …”