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完整皮层和去皮层猫丘脑的低频节律

Low-frequency rhythms in the thalamus of intact-cortex and decorticated cats.

作者信息

Timofeev I, Steriade M

机构信息

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

出版信息

J Neurophysiol. 1996 Dec;76(6):4152-68. doi: 10.1152/jn.1996.76.6.4152.

DOI:10.1152/jn.1996.76.6.4152
PMID:8985908
Abstract
  1. The patterns and synchronization of low-frequency, sleeplike rhythms (slow, spindle and delta oscillations) were compared in the intact-cortex and decorticated hemispheres of cats under ketamine-xylazine anesthesia. Intracellular recordings were performed in intact and decorticated hemispheres from 58 rostrolateral thalamic reticular (RE) neurons and from 164 thalamocortical (TC) neurons in the ventrolateral (VL) nucleus. In the decorticated hemisphere, dual intracellular recordings were performed from five RE-VL cell couples and from 12 TC cell couples within the VL nucleus. In addition, field potentials were simultaneously recorded from the neocortex (electroencephalogram) and ipsilateral thalamus [electrothalamogram (EThG)] of the intact (right) hemisphere, while EThG was recorded from the VL nucleus of the decorticated (left) hemisphere. 2. The slow oscillation (< 1 Hz) was absent in all 72 VL cells and in 23 of 25 RE cells from the decorticated hemisphere, as well as in the EThG recorded from the VL nucleus in the decorticated hemisphere, whereas it was simultaneously present in the cortex and thalamus of the intact hemisphere. The remaining two RE neurons (8%) in the decorticated hemisphere oscillated in close time relation with the slow oscillation in the cortex and thalamus of the opposite hemisphere; averaged activities showed that the onset of depolarization in RE cell followed 12 ms after the sharp depth-negative (depolarizing) component in the contralateral cortex. We view this result as the electrophysiological correlate of a disynaptic excitatory pathway consisting of crossed cortical projections, first relayed in contralateral dorsal thalamic nuclei. 3. The patterns of thalamic spindles (7-14 Hz) differed between the two hemispheres. Whereas the decorticated hemisphere displayed prolonged, waxing and waning spindles, the spindles in the intact-cortex hemisphere were short and exclusively waning and followed the depth-negative component of cortical slow oscillation. This result indicates that the synchronized corticothalamic drive associated with the slow oscillation fully entrains thalamic circuits from the onset of spindles, thus preventing further waxing. Similar differences between waxing and waning and waning spindles were obtained by stimulating with different intensities the thalamus in the decorticated hemisphere. 4. Simultaneous intracellular recordings from two VL cells or from RE and VL cells showed nearly simultaneous spindle sequences in the decorticated hemisphere. 5. The hyperpolarization-activated intrinsic delta oscillation (1-4 Hz) of TC cells was asynchronous in the decorticated hemisphere. 6. These results strengthen the idea that the slow oscillation is cortical in origin; demonstrate a full, short-range, intrathalamic synchrony of spindles in the absence of cortex; and indicate that the pattern of spindles, a sleep rhythm that is conventionally regarded as purely thalamic, is shaped by the corticothalamic feedback.
摘要
  1. 在氯胺酮-赛拉嗪麻醉下,比较了猫完整皮层和去皮质半球中低频、睡眠样节律(慢波、纺锤波和δ振荡)的模式和同步性。在完整和去皮质半球中,对58个 rostrolateral丘脑网状(RE)神经元和腹外侧(VL)核中的164个丘脑皮质(TC)神经元进行了细胞内记录。在去皮质半球中,对VL核内的五对RE-VL细胞对和12对TC细胞对进行了双细胞内记录。此外,同时记录了完整(右侧)半球的新皮层(脑电图)和同侧丘脑[丘脑电图(EThG)]的场电位,而从去皮质(左侧)半球的VL核记录了EThG。2. 去皮质半球的所有72个VL细胞和25个RE细胞中的23个,以及去皮质半球VL核记录的EThG中均未出现慢振荡(<1 Hz),而完整半球的皮层和丘脑中同时存在慢振荡。去皮质半球中其余两个RE神经元(8%)与对侧半球皮层和丘脑中的慢振荡在时间上密切相关;平均活动表明,RE细胞去极化的起始在对侧皮层的深度负向(去极化)尖峰成分之后12毫秒。我们将这一结果视为由交叉皮质投射组成的双突触兴奋性通路的电生理相关物,该通路首先在对侧背侧丘脑核中继。3. 两个半球的丘脑纺锤波(7-14 Hz)模式不同。去皮质半球显示出延长的、增强和减弱的纺锤波,而完整皮层半球中的纺锤波较短且仅为减弱型,并跟随皮层慢振荡的深度负向成分。这一结果表明,与慢振荡相关的同步皮质丘脑驱动从纺锤波开始就完全带动丘脑回路,从而防止进一步增强。通过不同强度刺激去皮质半球的丘脑,也得到了增强和减弱型纺锤波之间的类似差异。4. 对两个VL细胞或RE和VL细胞进行的同时细胞内记录显示,去皮质半球中纺锤波序列几乎同时出现。5. 在去皮质半球中,TC细胞的超极化激活的内在δ振荡(1-4 Hz)是异步的。6. 这些结果强化了慢振荡起源于皮层的观点;证明了在没有皮层的情况下,纺锤波在丘脑中存在完全的、短程的同步;并表明,传统上被认为纯粹是丘脑的睡眠节律——纺锤波模式,是由皮质丘脑反馈塑造的。

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