Showing 1 - 20 results of 11,778 for search '(( significant ((sizes decrease) OR (teer decrease)) ) OR ( significant shape increase ))', query time: 0.68s Refine Results
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    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. …”
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    Understanding the role of disease knowledge and risk perception in shaping preventive behavior for selected vector-borne diseases in Guyana by Céline Aerts (8677488)

    Published 2020
    “…This study also showed that higher education significantly improves knowledge and that better knowledge increases the take up of preventive measures for malaria and dengue, without affecting risk perception.…”
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    Effects of Shape on Interaction Dynamics of Tetrahedral Nanoplastics and the Cell Membrane by Xin Yong (1500670)

    Published 2023
    “…While the in-plane diffusion remains Brownian, we find that the translational and rotational modes decouple from each other as the particle size increases. The rotational diffusion decreases by a greater extent compared to the translational diffusion, deviating from the continuum theory predictions. …”
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    Effects of Shape on Interaction Dynamics of Tetrahedral Nanoplastics and the Cell Membrane by Xin Yong (1500670)

    Published 2023
    “…While the in-plane diffusion remains Brownian, we find that the translational and rotational modes decouple from each other as the particle size increases. The rotational diffusion decreases by a greater extent compared to the translational diffusion, deviating from the continuum theory predictions. …”
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    Effects of Shape on Interaction Dynamics of Tetrahedral Nanoplastics and the Cell Membrane by Xin Yong (1500670)

    Published 2023
    “…While the in-plane diffusion remains Brownian, we find that the translational and rotational modes decouple from each other as the particle size increases. The rotational diffusion decreases by a greater extent compared to the translational diffusion, deviating from the continuum theory predictions. …”
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