Showing 501 - 520 results of 134,206 for search '(( 2 c decrease ) OR ( 5 ((((teer decrease) OR (we decrease))) OR (a decrease)) ))', query time: 2.29s Refine Results
  1. 501
  2. 502
  3. 503
  4. 504
  5. 505
  6. 506
  7. 507

    Local inhibition of nitrergic activity in tenotomized rats accelerates muscle regeneration by increasing fiber area and decreasing central core lesions by A.D. Seabra (6515330)

    Published 2019
    “…<div><p>Muscular atrophy is a progressive degeneration characterized by muscular proteolysis, loss of mass and decrease in fiber area. …”
  8. 508
  9. 509
  10. 510
  11. 511
  12. 512
  13. 513

    (A) Decreasing CaMKII activity by KN-93 (high-3 µmol/L, low-0.5 µmol/L), AIP (high-10 µmol/L, low-2 µmol/L), or decreasing calmodulin activity by W-7 (high-50 µmol/L, low-20 µmol/L) decreases spontaneous AP firing rate (n = 10 for each drug), cAMP (n = 4 for each drug) and ATP (n = 5 for each drug). by Yael Yaniv (162548)

    Published 2013
    “…<p>The inactive KN-93 analog, KN-92 (3 µmol/L), has no significant effect on these measurements. A decrease in the spontaneous AP firing rate is associated with a decrease in cAMP that is linked to a decrease in ATP (B). …”
  14. 514

    Panel (a) shows ensemble mean global mean near-surface air temperature in historical and RCP simulations from CanESM2 by Nathan P Gillett (557010)

    Published 2013
    “…In CanESM2 simulations, we find that under the RCP 2.6 scenario, which includes the fastest decrease in aerosol and aerosol precursor emissions, the contribution of aerosol reductions to warming between 2000 and 2040 is around 30%. …”
  15. 515
  16. 516

    shRNA-mediated knockdown of SNAP23 decreases expression of KCa2.3 in HeLa cells. by Claudia A. Bertuccio (309866)

    Published 2018
    “…Knockdown of SNAP23 resulted in a decrease in both PM expression of KCa2.3 (top blot and panel <b>(B)</b>), as well as total KCa2.3 (middle blot and panel <b>(C)</b>). …”
  17. 517
  18. 518
  19. 519

    Ligand-Controlled Magnetic Interactions in Mn<sub>4</sub> Clusters by Erik Kampert (2330428)

    Published 2009
    “…Experimentally measured magnetic moments in high magnetic fields show that, upon electron density withdrawal, the main antiferromagnetic exchange constant <i>J</i><sub>1</sub> decreases from −2.2 K for the [Mn<sub>4</sub>(OAc)<sub>4</sub>] cluster to −1.9 K for the [Mn<sub>4</sub>(H<sub>5</sub>C<sub>6</sub>COO)<sub>4</sub>] cluster and −0.6 K for the [Mn<sub>4</sub>(F<sub>3</sub>CCOO)<sub>4</sub>] cluster, while <i>J</i><sub>2</sub> decreases from −1.1 K to nearly 0 K and <i>J</i><sub>3</sub> changes to a small ferromagnetic coupling. …”
  20. 520

    Ligand-Controlled Magnetic Interactions in Mn<sub>4</sub> Clusters by Erik Kampert (2330428)

    Published 2009
    “…Experimentally measured magnetic moments in high magnetic fields show that, upon electron density withdrawal, the main antiferromagnetic exchange constant <i>J</i><sub>1</sub> decreases from −2.2 K for the [Mn<sub>4</sub>(OAc)<sub>4</sub>] cluster to −1.9 K for the [Mn<sub>4</sub>(H<sub>5</sub>C<sub>6</sub>COO)<sub>4</sub>] cluster and −0.6 K for the [Mn<sub>4</sub>(F<sub>3</sub>CCOO)<sub>4</sub>] cluster, while <i>J</i><sub>2</sub> decreases from −1.1 K to nearly 0 K and <i>J</i><sub>3</sub> changes to a small ferromagnetic coupling. …”