Showing 21 - 40 results of 75,448 for search '(( significantly faster increases ) OR ( significantly ((teer decrease) OR (a decrease)) ))', query time: 0.64s Refine Results
  1. 21

    Transepithelial electrical resistance (TEER) (N = 6). by Shirko Marcel Shokr (19173337)

    Published 2024
    “…<p><b>(A)</b> During the cultivation of SMC and ALI we observed significantly differences on day 18 (SMC: 9.61 kΩ*cm<sup>2</sup>; ALI: 7.73 kΩ*cm<sup>2</sup>; p<0.05) and day 25 (SMC: 8.19 kΩ*cm<sup>2</sup>; ALI: 6.44 kΩ*cm<sup>2</sup>; p<0.05) ALI cultures showed significantly decreased values compared to SMC. …”
  2. 22
  3. 23

    Differential abundance analyses identified significant metabolites and pathways associated with Knight-C4. by Abdallah M. Eteleeb (13866743)

    Published 2024
    “…<p>(A) Venn diagrams show the significantly increased and decreased metabolites shared between the Knight-C4 and ROSMAP-C1 compared to the control. …”
  4. 24

    Concentration of RebA and Steviol showed increased significantly, whereas stevioside showed significant decrease in all the transgenic lines. by Nazima Nasrullah (6874496)

    Published 2023
    “…<p>Concentration of RebA and Steviol showed increased significantly, whereas stevioside showed significant decrease in all the transgenic lines.…”
  5. 25

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  6. 26

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  7. 27

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  8. 28

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  9. 29

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  10. 30

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  11. 31

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  12. 32

    Chemical Micromotors Move Faster at Oil–Water Interfaces by Jiayu Liu (3951515)

    Published 2024
    “…Such speed increases are likely caused by faster chemical reactions at an oil–water interface than at a glass–water interface, but the exact mechanism remains unknown. …”
  13. 33

    The number of gauging cross-sections where a statistically significant decreasing trend was identified. by Krzysztof Kochanek (835532)

    Published 2024
    “…<p>The number of gauging cross-sections where a statistically significant decreasing trend was identified.…”
  14. 34
  15. 35

    (a) YOLOv5s; (b) FasterNet-YOLO. by Shiwei Yu (6060308)

    Published 2025
    “…The results indicated that when comparing FasterNet-YOLO with the original model, the parameters were reduced by 49.4%, GFLOPs were reduced by 57.0%, mAP increased by 6.2%, and FPS increased by 54.1%. …”
  16. 36
  17. 37
  18. 38
  19. 39

    Statistically significant union pathways refer to the miRNAs with a decreased expression on day 5. by Morgana Lüdtke Azevedo (15285409)

    Published 2023
    “…<p>Statistically significant union pathways refer to the miRNAs with a decreased expression on day 5.…”
  20. 40