يعرض 3,781 - 3,800 نتائج من 9,774 نتيجة بحث عن 'significantly ((((((mean decrease) OR (linear decrease))) OR (we decrease))) OR (larger decrease))', وقت الاستعلام: 0.80s تنقيح النتائج
  1. 3781
  2. 3782
  3. 3783
  4. 3784
  5. 3785
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  7. 3787
  8. 3788

    Chemogenetic inhibition of Calcrl<sup>+</sup> neurons attenuates chronic itch in multiple chronic itch models. حسب Huifeng Jiao (11537806)

    منشور في 2025
    "…Data are presented as mean ± SEM (ns: not significant, **p < 0.01, ***p < 0.001). …"
  9. 3789

    Fig 1 - حسب Taehyeong Kim (8991383)

    منشور في 2024
  10. 3790

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  11. 3791

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  12. 3792

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  13. 3793

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  14. 3794

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  15. 3795

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  16. 3796

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  17. 3797

    Effect of the Surface Peak–Valley Features on Droplet Impact Dynamics under Leidenfrost Temperature حسب Yunlong Jiao (6672764)

    منشور في 2024
    "…When the microtexture area occupancy is 50%, it is worth noting that the micropit and micropillar surfaces have nearly same roughness (<i>Sa</i>), but the Leidenfrost temperature was notably higher on the micropit surface with negative skewness (<i>Ssk</i> < 0), which was related to differences in vapor flow dynamics. We further find that the Weber number (<i>We</i>) significantly influences the Leidenfrost point, with the droplet impact wall behavior going through the states of film bounce back, ejecting tiny droplets and bounce back, and ultimately droplet breakup as the <i>We</i> increases. …"
  18. 3798

    Enhanced intrinsic excitability of spinal Calcrl<sup>+</sup> neurons in chronic itch. حسب Huifeng Jiao (11537806)

    منشور في 2025
    "…Data are represented as mean ± SEM (n = 5 mice per group). ns: not significant, *p < 0.05, **p < 0.01. …"
  19. 3799

    S1 File - حسب Luqiong Liu (11537092)

    منشور في 2024
    "…Compared with LPS treatment alone, BA significantly mitigated the reduction in the TEER, decreased FD-4 flux permeability, increased the mRNA expression of ZO-1 and Occludin, and normalized the distribution of ZO-1 and Occludin in Caco2 cells. …"
  20. 3800

    Experimental treatments and groups. حسب Luqiong Liu (11537092)

    منشور في 2024
    "…Compared with LPS treatment alone, BA significantly mitigated the reduction in the TEER, decreased FD-4 flux permeability, increased the mRNA expression of ZO-1 and Occludin, and normalized the distribution of ZO-1 and Occludin in Caco2 cells. …"