Showing 66,081 - 66,100 results of 102,016 for search '(( 50 ((nn decrease) OR (mean decrease)) ) OR ( 5 ((point decrease) OR (a decrease)) ))', query time: 0.92s Refine Results
  1. 66081
  2. 66082

    Timecourse of Cu<sup>II</sup>(gtsm)-mediated ERK and JNK phosphorylation and the effect of specific kinase inhibition on neurite elongation in NGF-treated PC12 cells. by Laura Bica (227741)

    Published 2014
    “…<p>(<b>A & B</b>) Cu<sup>II</sup>(gtsm) (18 hr, 50 nM) decreased ERK and JNK activation from the 8 hr timepoint. …”
  3. 66083

    Expression profiles of genes whose mRNA levels were up- or down-regulated in the PBMCs of 15 IgAN (IgAN1- IgAN15) and eight MN (MN1-MN8) patients relative to those of HVs. by Yasuyuki Nagasawa (515930)

    Published 2016
    “…<p><b>(A)</b> List of the top 50 genes up-regulated in most IgAN and MN patients, shown in decreasing order of fold-change values. …”
  4. 66084

    Expression levels of the selected genes knocked down by RNAi. by Dong Fang (168743)

    Published 2011
    “…A 160 µg dosage was only used in the <i>krmp</i>-injected group, because the expression did not decrease significantly in the 40 µg dosage-injected group.…”
  5. 66085

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  6. 66086

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  7. 66087

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  8. 66088

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  9. 66089

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  10. 66090

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  11. 66091

    Catalyst-Free and Rapid Chemical Approach for in Situ Growth of “Chemically Reactive” and Porous Polymeric Coating by Supriya Das (529597)

    Published 2019
    “…Furthermore, the choice of small alkylamines for post-covalent modifications of the “chemically reactive” dip-coating provided superhydrophobicity with a tailored water adhesion. A gradual increase in both roll-off angles, and the contact angle hysteresis (from 5° to 30°) was noted with a decrease in the hydrocarbon tail of selected alkylamines. …”
  12. 66092
  13. 66093
  14. 66094
  15. 66095
  16. 66096
  17. 66097
  18. 66098
  19. 66099
  20. 66100