Showing 103,821 - 103,840 results of 103,864 for search '(( 2 fold decrease ) OR ( 5 ((((fold decrease) OR (point decrease))) OR (a decrease)) ))', query time: 1.98s Refine Results
  1. 103821

    Table_6_Single-Cell Profiling of Kidney Transplant Recipients With Immunosuppressive Treatment Reveals the Dynamic Immune Characteristics.csv by Yongguang Liu (5800769)

    Published 2021
    “…When the dose of immunosuppressant is too low, graft rejection occurs easily, while a dose that is too high can lead to graft loss. …”
  2. 103822

    Video4_Artificial intelligence-based analysis of time-lapse images of sphere formation and process of plate adhesion and spread of pancreatic cancer cells.MP4 by Yuuki Shichi (13951587)

    Published 2023
    “…When forming spheres using low-attachment plates, most epithelial PDAC cell lines initially showed decreased sphere area, and then the covering cells fused to form a smooth surface on the sphere. …”
  3. 103823
  4. 103824

    Anti-Inflammatory Cytokines Predominate in Acute Human <em>Plasmodium knowlesi</em> Infections by Janet Cox-Singh (218129)

    Published 2011
    “…Descriptions of human knowlesi malaria provide a comparative means to discover mediators of pathophysiology in severe <em>P. knowlesi</em> as well as <em>P. falciparum</em> malaria. …”
  5. 103825
  6. 103826
  7. 103827

    Video3_Artificial intelligence-based analysis of time-lapse images of sphere formation and process of plate adhesion and spread of pancreatic cancer cells.MP4 by Yuuki Shichi (13951587)

    Published 2023
    “…When forming spheres using low-attachment plates, most epithelial PDAC cell lines initially showed decreased sphere area, and then the covering cells fused to form a smooth surface on the sphere. …”
  8. 103828
  9. 103829
  10. 103830
  11. 103831
  12. 103832
  13. 103833

    Video6_Artificial intelligence-based analysis of time-lapse images of sphere formation and process of plate adhesion and spread of pancreatic cancer cells.MP4 by Yuuki Shichi (13951587)

    Published 2023
    “…When forming spheres using low-attachment plates, most epithelial PDAC cell lines initially showed decreased sphere area, and then the covering cells fused to form a smooth surface on the sphere. …”
  14. 103834

    After saphenous nerve injury GFRα2-positive neurons down-regulated GFRα2 and expressed GFRα3. by Ting Wang (16292)

    Published 2013
    “…<p>In naïve mice, IB<sub>4</sub>-488-back-labeled neurons were immunopositive for GFRα2 (<b><i>A</i></b><b>, </b><b><i>B</i></b><b>, </b><b><i>D</i></b><b>;</b> arrows), but not GFRα3 (<b><i>E</i></b><b>, </b><b><i>F</i></b><b>, </b><b><i>H</i></b><b>;</b> arrows). …”
  15. 103835

    Video8_Artificial intelligence-based analysis of time-lapse images of sphere formation and process of plate adhesion and spread of pancreatic cancer cells.MP4 by Yuuki Shichi (13951587)

    Published 2023
    “…When forming spheres using low-attachment plates, most epithelial PDAC cell lines initially showed decreased sphere area, and then the covering cells fused to form a smooth surface on the sphere. …”
  16. 103836

    Raw data. by Xiaofei Zheng (169655)

    Published 2023
    “…Personal feelings, including guilt, hurt, tension, and worry too long after an embarrassing experience, had a suggestive increased risk for MDD (all <i>P</i> < 0.000). …”
  17. 103837
  18. 103838

    Video7_Artificial intelligence-based analysis of time-lapse images of sphere formation and process of plate adhesion and spread of pancreatic cancer cells.MP4 by Yuuki Shichi (13951587)

    Published 2023
    “…When forming spheres using low-attachment plates, most epithelial PDAC cell lines initially showed decreased sphere area, and then the covering cells fused to form a smooth surface on the sphere. …”
  19. 103839
  20. 103840

    Oxidation of Dihydrogen by Iridium Complexes of Redox-Active Ligands by Mark R. Ringenberg (1776127)

    Published 2010
    “…Oxidation of H<sub>2</sub> is catalytic in the presence of a noncoordinating base at potentials required for the generation of [Cp*M(<sup>t</sup>BA<sup>R</sup>)]<sup>+</sup>. …”