يعرض 61 - 80 نتائج من 19,063 نتيجة بحث عن '(( significant role decreased ) OR ( significant ((inter decrease) OR (teer decrease)) ))', وقت الاستعلام: 0.49s تنقيح النتائج
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    Sensitivity analysis for inter-shift subscale. حسب Rong Pi (21743379)

    منشور في 2025
    "…Studies have consistently linked occupational fatigue to decreased productivity, heightened error rates, and compromised decision-making abilities, posing significant risks to both individual nurses and healthcare organizations. …"
  10. 70
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  12. 72

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  13. 73

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  14. 74

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  15. 75

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  16. 76

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  17. 77

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  18. 78

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
  19. 79

    Simulations of Diabetic and Non-Diabetic Peripheral Nerve Myelin Lipid Bilayers حسب Yiding Yuan (10918675)

    منشور في 2021
    "…Compared to PI-lipids, PS-lipids were found to cause higher inter-lipid spacing and decreased order within membranes as a result of their smaller headgroup size and higher inter-lipid hydrogen bonding potential, which allow them to more frequently reside deeper in the membrane plane and produce pushing effects on other lipids. …"
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