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Stereotypic wheel running decreases cortical activity in mice

机译:定型转轮运行会降低小鼠的皮质活动

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Prolonged wakefulness is thought to gradually increase ‘sleep need’ and influence subsequent sleep duration and intensity, but the role of specific waking behaviours remains unclear. Here we report the effect of voluntary wheel running during wakefulness on neuronal activity in the motor and somatosensory cortex in mice. We find that stereotypic wheel running is associated with a substantial reduction in firing rates among a large subpopulation of cortical neurons, especially at high speeds. Wheel running also has longer-term effects on spiking activity across periods of wakefulness. Specifically, cortical firing rates are significantly higher towards the end of a spontaneous prolonged waking period. However, this increase is abolished when wakefulness is dominated by running wheel activity. These findings indicate that wake-related changes in firing rates are determined not only by wake duration, but also by specific waking behaviours.
机译:长时间的清醒被认为会逐渐增加“睡眠需求”并影响随后的睡眠时间和强度,但具体的清醒行为的作用尚不清楚。在这里,我们报告了清醒过程中自动滚轮运行对小鼠运动神经元和体感皮层神经元活动的影响。我们发现,定型的车轮行驶与皮层神经元的大量亚群中的射速大幅降低有关,尤其是在高速下。在清醒期间,车轮行驶还会对长钉活动产生长期影响。具体而言,在自发延长的清醒期末,皮质的放电速率明显更高。但是,当觉醒由行驶中的车轮活动支配时,这种增加将被取消。这些发现表明,与唤醒相关的点火速率变化不仅取决于唤醒持续时间,还取决于特定的唤醒行为。

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