首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Dorsal spinocerebellar tract neurons in the chronic intact cat during wakefulness and sleep: analysis of spontaneous spike activity.
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Dorsal spinocerebellar tract neurons in the chronic intact cat during wakefulness and sleep: analysis of spontaneous spike activity.

机译:慢性完好的猫的清醒和睡眠期间的背脊髓小脑束神经元:自发穗活动的分析。

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Relatively little is known about the transmission of ascending sensory information from lumbar levels across the behavioral states of sleep and wakefulness. The present study used extracellular recording methods in chronically instrumented intact behaving cats to monitor the activity of lumbar dorsal spinocerebellar tract (DSCT) neurons within Clarke's column during the states of wakefulness, quiet sleep, and active sleep. Clarke's column DSCT neurons were identified using antidromic identification and retrograde labeling techniques. The spontaneous spike rate and interspike interval data of DSCT neurons were quantified as a function of behavioral state. During wakefulness and quiet sleep, the spike rate of DSCT neurons was stable, and interspike interval histograms (ISIH) indicated a relatively high degree of regularity in DSCT neuronal spike train patterns. In contrast, during active sleep there was a marked reduction in the ongoing spike rate in a vast majority of cells tested. The magnitude of change in ISIHs and interspike interval data during active sleep depended in part on whether the reduction in cell firing was maintained or periodic throughout active sleep. Further suppression of spontaneous activity also was observed during intense rapid-eye-movement episodes of active sleep that were associated with clustered pontogeniculo-occipital wave and muscular twitches and jerks. After re-awakening, spontaneous spike activity of Clarke's column DSCT neurons resembled that recorded during previous episodes of wakefulness. These data provide evidence that ascending proprioceptive and exteroceptive sensory transmission through Clarke's column is diminished during the behavioral state of active sleep.
机译:从腰部水平到睡眠和清醒的行为状态的上升感觉信息的传递知之甚少。本研究在长期装备完好无损的行为猫中使用细胞外记录方法,以监测清醒,安静睡眠和积极睡眠状态下Clarke柱内的腰背脊髓小脑束(DSCT)神经元的活动。克拉克的DSCT列神经元使用反线识别和逆行标记技术进行识别。 DSCT神经元的自发尖峰频率和尖峰间隔数据被量化为行为状态的函数。在清醒和安静的睡眠期间,DSCT神经元的尖峰频率稳定,而尖峰间间隔直方图(ISIH)表明DSCT神经元尖峰训练模式具有相对较高的规律性。相反,在活跃的睡眠期间,绝大多数测试细胞的持续峰值速率显着降低。在主动睡眠期间,ISIH和峰间间隔数据的变化幅度部分取决于是否维持细胞放电减少或在整个主动睡眠中是周期性的。在活跃睡眠的剧烈快速眼动发作中还观察到了自发活动的进一步抑制,这些发作与成簇的桥脑枕波和肌肉抽搐和抽搐有关。重新唤醒后,克拉克的DSCT列神经元的自发尖峰活动类似于先前的清醒发作所记录的活动。这些数据提供了证据,表明在主动睡眠的行为状态下,通过克拉克专栏进行的本体感觉和本体感觉感觉传递的传递减少了。

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