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自然睡眠状态下猫的丘脑爆发模式:皮质投射神经元与网状神经元的比较。

Thalamic burst patterns in the naturally sleeping cat: a comparison between cortically projecting and reticularis neurones.

作者信息

Domich L, Oakson G, Steriade M

出版信息

J Physiol. 1986 Oct;379:429-49. doi: 10.1113/jphysiol.1986.sp016262.

Abstract

Unit discharges were extracellularly recorded from antidromically identified thalamocortical neurones of ventralis lateralis (v.l.) and centralis lateralis (c.l.) nuclei as well as from reticularis thalami (re.) neurones during wakefulness and electroencephalogram-synchronized sleep of the behaving cat. Various parameters of sleep-related discharge bursts were analysed. Statistical analyses revealed striking similarities between motor relay (v.l.) and intralaminar (c.l.) neurones. More than 60% of bursts consist of three to five spikes at 250-400 Hz. The defining feature of bursts in all cortically projecting neurones is a progressive increase in the duration of successive interspike intervals. As in thalamocortical cells, all re. neurones change their tonic discharges in waking to bursting firing in sleep, regardless of the increased or decreased firing rates from wake to sleep in individual neurones. The bursts of re. neurones are essentially different from those of thalamocortical cells. In re. neurones, burst structure consists of an initial progressive decrease in duration of interspike intervals, followed by an increase in duration of successive intervals, eventually leading to a long-lasting tonic spike train at about 100 Hz. In contrast with bursts of thalamocortical neurones, only 6% of re. bursts are shorter than 50 ms; the total duration of the burst extends between 50 ms and 1.5 s. Population periburst histograms show the beginning of a decline in firing probability about 1.5 s prior to burst onset and an increased firing probability persisting for 300-350 ms after burst onset. The different electrophysiological properties underlying the burst structure of cat's thalamocortical and re. neurones are discussed, with emphasis on dissimilar aspects of re. bursts in unanaesthetized and barbituratized preparations. Various factors that may account for the transition from tonic mode in waking to bursting mode in sleep are envisaged.

摘要

在行为猫的清醒状态和脑电图同步睡眠期间,从腹外侧(v.l.)和外侧中央(c.l.)核的逆行鉴定丘脑皮质神经元以及丘脑网状(re.)神经元中细胞外记录单位放电。分析了与睡眠相关放电爆发的各种参数。统计分析显示运动中继(v.l.)和层内(c.l.)神经元之间存在显著相似性。超过60%的爆发由250-400Hz的三到五个尖峰组成。所有投射到皮质的神经元爆发的定义特征是连续峰间间隔的持续时间逐渐增加。与丘脑皮质细胞一样,所有re.神经元在清醒时将其紧张性放电转变为睡眠时的爆发性放电,而与单个神经元从清醒到睡眠时放电率的增加或减少无关。re.神经元的爆发与丘脑皮质细胞的爆发本质上不同。在re.神经元中,爆发结构包括峰间间隔持续时间最初逐渐减少,随后连续间隔持续时间增加,最终导致约100Hz的持久紧张性尖峰序列。与丘脑皮质神经元的爆发相比,只有6%的re.爆发短于50ms;爆发的总持续时间在50ms至1.5s之间。群体爆发前直方图显示在爆发开始前约1.5s放电概率开始下降,在爆发开始后300-350ms放电概率持续增加。讨论了猫丘脑皮质和re.神经元爆发结构背后不同的电生理特性,重点是未麻醉和巴比妥麻醉制剂中re.爆发的不同方面。设想了可能解释从清醒时紧张性模式转变为睡眠时爆发性模式的各种因素。

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