Showing 1,301 - 1,320 results of 103,159 for search '(( 2 step decrease ) OR ( 5 ((ng decrease) OR (((mean decrease) OR (a decrease)))) ))', query time: 1.33s Refine Results
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    Inhibition of MRP1 significantly decreases basal and apoptotic GSH efflux. by Parameswaran G. Sreekumar (176748)

    Published 2012
    “…GSH release from MRP1-silenced ARPE-19 cells incubated with 150 µM H<sub>2</sub>O<sub>2</sub> for 5 h in serum free medium. A significant decrease (P<0.001 vs scrambled control) in GSH release was observed in 5 h. …”
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  11. 1311
  12. 1312

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  13. 1313

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  14. 1314

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  15. 1315

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  16. 1316

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  17. 1317

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  18. 1318

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  19. 1319

    Microscopic Movement of Slow-Diffusing Nanoparticles in Cylindrical Nanopores Studied with Three-Dimensional Tracking by Luyang Zhao (1903252)

    Published 2016
    “…In viscous solvents, the particle steps decrease proportionally to the increment of the viscosity, leading to macroscopically slow diffusion. …”
  20. 1320

    L-NNA treatment decreases tumor blood flow and increases hypoxia. by Robert J. G. Cardnell (350872)

    Published 2013
    “…Data presented as mean intensity as a percentage of control ± SEM; n = 5; *** = p<0.01. …”