Showing 12,021 - 12,040 results of 50,373 for search '(( a ((linear decrease) OR (mean decrease)) ) OR ( a ((latest decrease) OR (larger decrease)) ))', query time: 0.99s Refine Results
  1. 12021
  2. 12022

    The balance of Lyapunov exponent is disturbed in subjects with tinnitus. by Zahra Naghdabadi (17721096)

    Published 2024
    “…The schematic red lines demonstrate the concept of lyapunov exponent as the exponent of distance increase/decrease of nearby points on the attractor. (B) Topographic plots of mean lyapunov exponent in normal and patient groups. …”
  3. 12023
  4. 12024
  5. 12025
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  8. 12028
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  11. 12031

    Summary of trial characteristics<sup>b'*'</sup>. by Qi Liu (33068)

    Published 2023
    “…There was evidence of interaction/influence by food source: fruit and 100% fruit juice decreased and mixed sources (with sugar-sweetened beverages [SSBs]) increased BP in addition trials and the removal of SSBs (linear dose response gradient) and mixed sources (with SSBs) decreased BP in subtraction trials. …”
  12. 12032
  13. 12033

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  14. 12034

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  15. 12035

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  16. 12036

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  17. 12037

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  18. 12038

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  19. 12039

    Active Diffusion of Self-Propelled Particles in Flexible Polymer Networks by Yeongjin Kim (10878837)

    Published 2022
    “…Biopolymer networks having a meshwork topology, e.g., extracellular matrices and mucus gels, are ubiquitous. …”
  20. 12040