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丘脑网状核神经元再探讨:警觉状态转换期间的活动变化

Reticularis thalami neurons revisited: activity changes during shifts in states of vigilance.

作者信息

Steriade M, Domich L, Oakson G

出版信息

J Neurosci. 1986 Jan;6(1):68-81. doi: 10.1523/JNEUROSCI.06-01-00068.1986.

Abstract

This study tested the hypothesis that inhibitory actions are exerted by reticularis thalami (RE) neurons upon thalamocortical neurons. The RE neurons were recorded in the rostral pole and lateral districts of the nucleus, and were activated monosynaptically by cortical volleys. Thalamocortical neurons were identified antidromically in intralaminar and ventrolateral nuclei. During sleep with EEG synchronization, prolonged spike barrages of RE neurons extended over the whole spindle sequences. This result suggests that RE neurons are depolarized throughout spindle oscillations, whereas thalamocortical neurons show, simultaneously, long hyperpolarizations and short rebounds. During waking, parallelism rather than reciprocity was found between RE and thalamocortical neurons. Spontaneous discharge rates almost doubled in RE neurons on arousal from sleep, and the probability of cortically evoked short-latency discharges increased. The increase in spontaneous firing rates of RE neurons during natural arousal is consistent with their short-latency synaptic excitation by stimulating the rostral brain stem reticular formation after chronic degeneration of passing fibers. We suggest that RE cells inhibit GABAergic local-circuit cells, in addition to inhibiting thalamocortical neurons, and that different ratios of inhibitory effects are exerted by RE neurons upon these two cell classes during waking and sleep. We further suggest that, upon arousal, disinhibition of thalamocortical neurons (via the local-circuit neurons) outweighs direct inhibition of the thalamocortical neurons.

摘要

本研究验证了丘脑网状核(RE)神经元对丘脑皮质神经元施加抑制作用的假说。在该核的吻极和外侧区记录RE神经元,其被皮质冲动单突触激活。在板内核和腹外侧核中逆向鉴定出丘脑皮质神经元。在脑电图同步的睡眠期间,RE神经元的长时间放电阵发延伸至整个纺锤波序列。这一结果表明,在整个纺锤波振荡过程中RE神经元去极化,而与此同时丘脑皮质神经元表现出长时间的超极化和短暂的反弹。在清醒状态下,RE神经元和丘脑皮质神经元之间表现出平行关系而非相互关系。从睡眠中觉醒时,RE神经元的自发放电率几乎翻倍,皮质诱发的短潜伏期放电概率增加。自然觉醒期间RE神经元自发放电率的增加与其在经过的纤维慢性退变后通过刺激吻侧脑干网状结构产生的短潜伏期突触兴奋一致。我们认为,RE细胞除了抑制丘脑皮质神经元外,还抑制GABA能局部回路细胞,并且在清醒和睡眠期间RE神经元对这两类细胞施加不同比例的抑制作用。我们进一步认为,觉醒时,丘脑皮质神经元的去抑制(通过局部回路神经元)超过对丘脑皮质神经元的直接抑制。

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