Showing 521 - 540 results of 49,000 for search '(( a ((step decrease) OR (mean decrease)) ) OR ( i ((largest decrease) OR (larger decrease)) ))', query time: 1.01s Refine Results
  1. 521

    Construction of Enhanced Photostability Anthraquinone-Type Nanovesicles Based on a Novel Two-Step Supramolecular Assembly Strategy and Their Application on Multiband Laser-Responsi... by Linlin Su (570132)

    Published 2021
    “…The photostability and dispersity under aggregation states always become an obstacle for the development of small-molecular organic dye (SMOD) composites. Herein, a novel supramolecular assembly strategy with a two-step assembly method is implemented to encapsulate SMODs for improving their photostability and acquiring uniformly dispersed nanoaggregates in aqueous solution. …”
  2. 522

    Construction of Enhanced Photostability Anthraquinone-Type Nanovesicles Based on a Novel Two-Step Supramolecular Assembly Strategy and Their Application on Multiband Laser-Responsi... by Linlin Su (570132)

    Published 2021
    “…The photostability and dispersity under aggregation states always become an obstacle for the development of small-molecular organic dye (SMOD) composites. Herein, a novel supramolecular assembly strategy with a two-step assembly method is implemented to encapsulate SMODs for improving their photostability and acquiring uniformly dispersed nanoaggregates in aqueous solution. …”
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    FTY720 treatment decreased phosphorylation of AKT, ERK, and c-myc. by Laura L. Stafman (6577184)

    Published 2019
    “…<p>(A) Immunoblotting for the activated form of AKT–phospho-AKT (Ser473)–and total AKT revealed a decrease in phospho-AKT with no accompanying change in total AKT, indicating a decrease in AKT signaling with FTY720 treatment. …”
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    Decreased frequency of sEPSCs in <i>Dyt1</i> heterozygous KO mice. by Fumiaki Yokoi (170876)

    Published 2015
    “…<p>(A) Representative traces for sEPSCs. <i>Dyt1</i> heterozygous KO mice had a significantly decreased frequency of sEPSCs (B), but no change in either the amplitude (C), or rise (D) and decay (E) times of these events. …”
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