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慢波(<1Hz)新皮层振荡与脑电图其他睡眠节律之间关系的细胞内分析。

Intracellular analysis of relations between the slow (< 1 Hz) neocortical oscillation and other sleep rhythms of the electroencephalogram.

作者信息

Steriade M, Nuñez A, Amzica F

机构信息

Laboratoire de Neurophysiologie, Faculté de Médecine, Université Laval, Quebec, Canada.

出版信息

J Neurosci. 1993 Aug;13(8):3266-83. doi: 10.1523/JNEUROSCI.13-08-03266.1993.

Abstract

The newly described slow cortical rhythm (approximately 0.3 Hz), whose depolarizing-hyperpolarizing components are analyzed in the preceding article, is now investigated from the standpoint of its relations with delta (1-4 Hz) and spindle (7-14 Hz) rhythmicity. Regular-spiking and intrinsically bursting cortical neurons were mostly recorded from association suprasylvian areas 5 and 7; fewer neurons were also recorded from pericruciate motor and posterolateral visual areas. Although most cells were investigated under various anesthetics, a similar slow cortical rhythm was found in animals with brainstem transection at the low- or high-collicular levels. These cerveau isolé (isolated forebrain) preparations display the major sleep rhythms of the EEG in the absence of general anesthetics. In 38% of recorded cortical neurons (n = 105), the slow rhythm was combined with delta oscillation. Both cellular rhythms were phase locked to the slow and delta oscillations in the surface- and depth-recorded EEG. In a group of this cell sample (n = 47), delta activity occurred as stereotyped, clock-like action potentials during the interdepolarization lulls of the slow rhythm. In another neuronal subsample (n = 58), delta events were grouped in sequences superimposed upon the depolarizing envelope of the slow rhythm, with such sequences recurring rhythmically at approximately 0.3-0.4 Hz. The associations between the two cellular and EEG rhythms (1-4 Hz and 0.3-0.4 Hz) were quantified by means of autocorrelograms, cross-correlograms, and spike-triggered averages. In 26% of recorded neurons (n = 72), the slow rhythm was combined with spindle oscillations. Regular-spiking cortical neurons fully reflected the whole frequency range of thalamically generated spindles (7-14 Hz). However, during similar patterns of EEG spindling, intrinsically bursting cells fired grouped action potentials (with intraburst frequencies of 100-200 Hz) at only 2-4 Hz. The dependence of the slow cortical oscillation upon the thalamus was studied by lesions and stimulation. The slow rhythm survived extensive ipsilateral thalamic destruction by means of electrolytic lesions or kainate-induced loss of perikarya in thalamic nuclei that were input sources to the recorded cortical neurons. To further prevent the possibility of a thalamic role in the genesis of the slow rhythm, through the contralateral thalamocortical systems and callosal projections, we also transected the corpus callosum in thalamically lesioned animals, and still recorded the slow rhythm in cortical neurons. These data indicate that the thalamus is not essentially implicated in the genesis of the slow rhythm.(ABSTRACT TRUNCATED AT 400 WORDS)

摘要

在前一篇文章中对其去极化-超极化成分进行了分析的新描述的慢皮层节律(约0.3赫兹),现在从其与δ波(1-4赫兹)和纺锤波(7-14赫兹)节律的关系角度进行研究。规则放电和内在爆发性的皮层神经元大多记录自上薛氏沟联合区5和7;也从十字周运动区和后外侧视觉区记录到较少的神经元。尽管大多数细胞是在各种麻醉剂作用下进行研究的,但在低丘或高丘水平进行脑干横切的动物中也发现了类似的慢皮层节律。这些孤立脑(孤立前脑)标本在没有全身麻醉的情况下显示出脑电图的主要睡眠节律。在记录的皮层神经元中,38%(n = 105)的慢节律与δ波振荡相结合。两种细胞节律都与表面和深部记录的脑电图中的慢波和δ波振荡锁相。在该细胞样本的一组(n = 47)中,在慢节律的去极化间歇期,δ波活动以刻板的、时钟样动作电位的形式出现。在另一个神经元子样本(n = 58)中,δ波事件成序列地叠加在慢节律的去极化包络上,这些序列以约0.3-0.4赫兹的频率有节奏地重复出现。通过自相关图、互相关图和触发尖峰平均法对两种细胞节律和脑电图节律(1-4赫兹和0.3-0.4赫兹)之间的关联进行了量化。在记录的神经元中,26%(n = 72)的慢节律与纺锤波振荡相结合。规则放电皮层神经元充分反映了丘脑产生的纺锤波的整个频率范围(7-14赫兹)。然而,在脑电图纺锤波的类似模式期间,内在爆发性细胞仅以2-4赫兹的频率发放成组动作电位(爆发内频率为100-200赫兹)。通过损伤和刺激研究了慢皮层振荡对丘脑的依赖性。通过电解损伤或在记录的皮层神经元的输入源丘脑核中用红藻氨酸诱导神经元胞体丢失,慢节律在广泛的同侧丘脑破坏后依然存在。为了进一步排除丘脑在慢节律产生中起作用的可能性,通过对侧丘脑皮质系统和胼胝体投射,我们还在丘脑损伤的动物中横切了胼胝体,并且仍然在皮层神经元中记录到了慢节律。这些数据表明,丘脑在慢节律的产生中并非必不可少。(摘要截取自400字)

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