يعرض 1 - 20 نتائج من 21,677 نتيجة بحث عن '(( significant decrease decrease ) OR ( significantly ((alter decrease) OR (water degrades)) ))', وقت الاستعلام: 0.47s تنقيح النتائج
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    HFD decreases ITM and alters metabolic homeostasis. حسب Tong Yue (6033305)

    منشور في 2025
    "…Two-way ANOVA, n.s., not significant, ** p < 0.01). <b>(F)</b> Long-term memory (LTM) was significantly decreased in the HFD group. …"
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    Decreased synthesis of VCAM-1, tubulin and dynein proteins in the heart of mice stimulated with EVs (green) or ICs (blue). حسب Alberto Cornet-Gomez (10676133)

    منشور في 2025
    "…The values represent the mean ± SEM, with significance set at p < 0.05 (*).</p>…"
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    NgR1 KO mice exhibited an increase in excitatory synapses and a decrease in inhibitory synapses, indicating an imbalance of synaptic transmission. حسب Jinwei Zhang (462455)

    منشور في 2025
    "…The inhibitory synaptic density of NgR1 mice showed a significant decrease when compared to WT mice (***P <  0.001). …"
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    Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes حسب Shakkira Erimban (6882539)

    منشور في 2025
    "…This IEC loss mechanism exacerbates the reduction in ionic conductivity, emphasizing the severity of ether cleavage as a degradation pathway. Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…"
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    Ether Cleavage Decreases the Ion Exchange Capacity of Anion Exchange Membranes حسب Shakkira Erimban (6882539)

    منشور في 2025
    "…This IEC loss mechanism exacerbates the reduction in ionic conductivity, emphasizing the severity of ether cleavage as a degradation pathway. Recognizing that ether cleavage introduces significant chemical changes beyond polymer fragmentation provides critical insights into its interplay with other degradation mechanisms, such as the direct reduction of cationic sites by E2 and S<sub>N</sub>2, and provides molecular-level interpretations for the concurrent effects of polymer scission and increased hydrophilicity on membrane performance.…"
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