Showing 421 - 440 results of 17,983 for search 'significant ((((((step decrease) OR (a decrease))) OR (teer decrease))) OR (small decrease))', query time: 0.73s Refine Results
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    Juvenile demyelination impairs the maturation of PV interneurons in the PFC. by Sara Hijazi (21656615)

    Published 2025
    “…Average action potential (AP) frequency in response to 0-650 pA current steps illustrating a significant decrease in PV interneuron firing frequency in cuprizone-treated mice. …”
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    PV interneurons from Shiverer mice show many similarities with the ones from mice that underwent juvenile demyelination. by Sara Hijazi (21656615)

    Published 2025
    “…Average action potential (AP) frequency in response to 0-650 pA current steps illustrating a significant decrease in PV interneuron firing frequency in Shiverer mice (<i>group x current two-way repeated measures: n = 25/25 cells from 9 mice per group: F(13,624) = 2.303, **p < 0.0056</i>). …”
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    Remyelination in adulthood leads to an incomplete restoration of PV interneuron properties. by Sara Hijazi (21656615)

    Published 2025
    “…Average action potential (AP) frequency in response to 0-650 pA current steps illustrating a significant decrease in PV interneuron firing frequency in remyelination (green) mice (<i>group x current two-way repeated measures: n = 25/19 cells from 8 mice per group: F(13,546) = 3.962, ***p < 0.001</i>). …”
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    AUT00201 (1 µM) can rescue AP width in cuprizone mice. by Sara Hijazi (21656615)

    Published 2025
    “…In the responsive cells from cuprizone mice (red) a significant increase in PV interneuron firing frequency at lower current steps (gray) was observed (<i>group x current two-way repeated measures: n = 8 cells from 4 mice: p = 0.05287; AUT00201 effect: F(1,60) = 5.050, *p = 0.0457. …”
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    Comparison between juvenile and adult demyelination. by Sara Hijazi (21656615)

    Published 2025
    “…<p><b>A–I</b>. Juvenile demyelination leads to impairment in PV interneuron maturation whereas adult demyelination induces a decrease in the excitability of PV interneurons. …”
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