Showing 1 - 20 results of 14,553 for search '(( i ((larger decrease) OR (marked decrease)) ) OR ( showing ((co decrease) OR (a decrease)) ))', query time: 0.72s Refine Results
  1. 1

    Cinacalcet administered early in the inactive phase markedly decrease parathyroid Ki-67 index. by Søren Egstrand (10906087)

    Published 2025
    “…All groups were compared by Kruskal Wallis test with <i>post hoc</i> test after Dunn with Bonferroni adjustment showing significant decreased Ki-67 labeling index of <i>Cina1</i> compared to <i>Cina2</i> (p = 0.006) and the untreated CKD groups (p = 0.0001 and p = 0.0002, respectively). …”
  2. 2

    DALY and HLY in Portugal, 1990–2019. The first graph shows a decreasing trend of DALY and the second graph shows an increasing trend of HLY. by Aida Isabel Tavares (12080156)

    Published 2025
    “…<p>DALY and HLY in Portugal, 1990–2019. The first graph shows a decreasing trend of DALY and the second graph shows an increasing trend of HLY.…”
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    The capture efficiency of BioMagnetic solutions FerroSelect in PBS/1% BSA and whole blood showed a decrease in capture efficiency when moving to whole blood. by Peng Liu (120506)

    Published 2025
    “…<p>The capture efficiency of BioMagnetic solutions FerroSelect in PBS/1% BSA and whole blood showed a decrease in capture efficiency when moving to whole blood.…”
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    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”
  16. 16

    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”
  17. 17

    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”
  18. 18

    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”
  19. 19

    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”
  20. 20

    An <i>In Situ</i> TEM Study of the Diffusivity of Gold Atoms in Nanocomposite Thin Films by Zirconia Co-Deposition: Implication for Neuromorphic Devices by Alberto Casu (1285227)

    Published 2025
    “…Molecular dynamics simulations corroborated these findings, showing a marked decrease in gold diffusivity when codeposited with zirconia: its inclusion reduced it by approximately a factor of 3, mainly due to zirconia’s high melting point. …”