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significant all » significant anti (Expand Search), significant gap (Expand Search), significant _ (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search), we decrease (Expand Search)
all decrease » small decrease (Expand Search), fold decrease (Expand Search), awd decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
significant all » significant anti (Expand Search), significant gap (Expand Search), significant _ (Expand Search)
step decrease » sizes decrease (Expand Search), teer decrease (Expand Search), we decrease (Expand Search)
all decrease » small decrease (Expand Search), fold decrease (Expand Search), awd decreased (Expand Search)
a decrease » _ decrease (Expand Search), _ decreased (Expand Search), _ decreases (Expand Search)
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61
All data points from Fig 3.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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62
All data points from Fig 1.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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63
All data points from Fig 4.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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64
All data points from Fig 9.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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65
All data points from Fig 7.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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66
All data points from Fig 6.
Published 2025“…We also found a significant impairment in PV interneuron autaptic self-inhibitory transmission, a feature implicated in temporal control of PV interneuron firing during cortical network activity. …”
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67
Annual number of outpatient visits in all eyes.
Published 2025“…<p>Mean visit frequency (mean ± standard deviation) significantly decreased from 11.5 ± 4.3 preoperatively to 8.8 ± 4.1, 5.0 ± 3.4, and 4.4 ± 3.2 visits in the first, second, and third postoperative years, respectively (Kruskal–Wallis test, P < 0.001; Dunn’s test, **P < 0.01). …”
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68
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69
Juvenile demyelination induces a loss of functional autapses.
Published 2025“…Cuprizone-treated mice show a significant decrease in the percentage of cells showing an autaptic response (<i>Fisher’s exact test; *p = 0.0173</i>). …”
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70
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75
Time course of central retinal thickness (CRT) in all eyes.
Published 2025“…<p>Mean CRT (μm ± standard deviation) significantly decreased from 504.7 ± 118.2 μm preoperatively to 302.5 ± 60.5 at 1 month, 307.5 ± 64.4 at 3 months, 286.8 ± 49.0 at 6 months, 305.3 ± 79.5 at 12 months, 288.8 ± 79.1 at 24 months, and 295.2 ± 87.4 at 36 months (Kruskal–Wallis test, P < 0.001; Dunn’s test, **P < 0.01). …”
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76
Autapses play a crucial role in PV interneuron’s sustained firing at high frequencies.
Published 2025“…Average action potential (AP) frequency in response to 0−650 pA current steps illustrating a significant increase in PV interneuron firing frequency at low-current steps in control cells without autapses (gray) compared to control cells with autapses (black). …”
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