Showing 581 - 600 results of 108,886 for search '(( i point decrease ) OR ( 5 ((((step decrease) OR (we decrease))) OR (a decrease)) ))', query time: 1.95s Refine Results
  1. 581
  2. 582
  3. 583
  4. 584
  5. 585
  6. 586
  7. 587
  8. 588
  9. 589

    Pannexin-1 hemichannel blockade by probenecid decreases dendritic morphology and process dynamics of retinal microglia. by Aurora M. Fontainhas (232472)

    Published 2011
    “…<p><b><i>A</i></b>. Microglial morphologic parameters of dendritic tree area, total dendritic length, and branch point number were significantly decreased by the application of probenecid (1mM), an antagonist of pannexin-1 hemichannels; (n = 46 cells). …”
  10. 590
  11. 591

    miR-200b is sufficient to decrease tumor growth. by LaTanya V. Williams (504683)

    Published 2013
    “…PC3 cells were trasduced with a bicistronic lentiviral shuttle vector (pMIRNA1 pCDH-CMV-MCS-EF1-copRFP) encoding hsa-miR-200b and empty vector control (ctrl). …”
  12. 592
  13. 593
  14. 594

    Demonstration of test steps. by Jin Zhu (164147)

    Published 2025
    “…In sand column tests, specimens treated with cementing solution with ferric ion achieved the UCS of 2.83 MPa after five injection cycles, representing a 15-fold increase compared to conventional MICP-treated specimens under the same test conditions. …”
  15. 595

    <i>ERG251</i> SNPs from all FLC-evolved strains. by Xin Zhou (54275)

    Published 2024
    “…This is the first known example of point mutations causing azole tolerance in <i>C</i>. …”
  16. 596

    Processive receptor methylation compromises adaptation and decreases signaling noise. by William Pontius (460803)

    Published 2013
    “…The model was exposed to simulated time-varying exponential ramps of methyl-aspartate and the resulting steady-state activity <i>a</i><sub>0</sub> recorded (black). (B) Response to small (5 µM) and large (1 mM) MeAsp step stimulus at applied at <i>t</i> = 200 s as measured by receptor activity <i>a</i>(<i>t</i>). …”
  17. 597
  18. 598
  19. 599
  20. 600