Showing 41 - 60 results of 20,849 for search '(( significant ((teer decrease) OR (greater decrease)) ) OR ( significant complexity increases ))', query time: 0.78s Refine Results
  1. 41

    Image_1_Trans ε-Viniferin Decreases Amyloid Deposits With Greater Efficiency Than Resveratrol in an Alzheimer’s Mouse Model.pdf by Aline Freyssin (11912204)

    Published 2022
    “…Furthermore, a significant decrease in brain uptake of the TSPO PET tracer [<sup>18</sup>F]DPA-714 was observed with viniferin compared to resveratrol. …”
  2. 42

    Image_3_Trans ε-Viniferin Decreases Amyloid Deposits With Greater Efficiency Than Resveratrol in an Alzheimer’s Mouse Model.pdf by Aline Freyssin (11912204)

    Published 2022
    “…Furthermore, a significant decrease in brain uptake of the TSPO PET tracer [<sup>18</sup>F]DPA-714 was observed with viniferin compared to resveratrol. …”
  3. 43

    Image_2_Trans ε-Viniferin Decreases Amyloid Deposits With Greater Efficiency Than Resveratrol in an Alzheimer’s Mouse Model.pdf by Aline Freyssin (11912204)

    Published 2022
    “…Furthermore, a significant decrease in brain uptake of the TSPO PET tracer [<sup>18</sup>F]DPA-714 was observed with viniferin compared to resveratrol. …”
  4. 44

    Table_2_Trans ε-Viniferin Decreases Amyloid Deposits With Greater Efficiency Than Resveratrol in an Alzheimer’s Mouse Model.pdf by Aline Freyssin (11912204)

    Published 2022
    “…Furthermore, a significant decrease in brain uptake of the TSPO PET tracer [<sup>18</sup>F]DPA-714 was observed with viniferin compared to resveratrol. …”
  5. 45

    Image_4_Trans ε-Viniferin Decreases Amyloid Deposits With Greater Efficiency Than Resveratrol in an Alzheimer’s Mouse Model.pdf by Aline Freyssin (11912204)

    Published 2022
    “…Furthermore, a significant decrease in brain uptake of the TSPO PET tracer [<sup>18</sup>F]DPA-714 was observed with viniferin compared to resveratrol. …”
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    Competition-driven evolution of organismal complexity by Iaroslav Ispolatov (33504)

    Published 2019
    “…The model exhibits sequential increases in phenotypic complexity driven by diversification at existing levels of complexity and a resulting increase in competitive pressure, which can push an evolving species over the barrier of physiological costs of new phenotypic features.…”
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