玄武岩-皮质系统仅仅是上升网状激活系统的丘脑外中继吗?与米尔恰·斯特里亚德的对话

B. Jones
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引用次数: 0

摘要

在早期的研究中,基底皮层系统作为脑干网状激活系统到大脑皮层的丘脑外中继。正如Mircea Steriade所记录的那样,激活脉冲通过非特异性丘脑-皮层投射系统或基底-皮层投射系统传输,以刺激广泛、快速的皮层活动,这是在清醒(W)和矛盾睡眠(PS)状态下自然发生的激活特征。然而,基底前脑神经元与丘脑神经元有许多不同之处。首先,许多皮层投射的BF神经元利用乙酰胆碱(ACh),它在刺激快速皮层活动中起着至关重要的作用。其次,乙酰胆碱释放神经元在W和PS期间选择性放电,在慢波睡眠(SWS)期间停止放电。第三,乙酰胆碱释放神经元在皮层激活期间有节奏地放电,因此可以以缓慢的节奏方式调节皮层,以促进广泛皮层网络的连贯活动。第四,BF神经元释放ACh、GABA或谷氨酸并投射到皮层的节律性放电发生在嗅觉和边缘皮层的呼吸或θ频率上,这揭示了这些输入和输出在基底皮层-皮质-基底皮层回路中的特殊重要性。第五,其他非胆碱能BF神经元,包括释放gaba的神经元,在睡眠期间选择性地活跃:其中一些神经元可能通过皮层投射促进SWS期间的慢波活动;而另一些则可能通过下行投射促进SWS和PS期间的行为平静。最后,BF神经元也投射到丘脑,因此,在整个睡眠-觉醒周期中,可能招募或加入丘脑神经元来调节皮层活动。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Is the basalo-cortical system simply an extra-thalamic relay of the ascending reticular activating system? A discourse with Mircea Steriade
As established in early studies, the basalo-cortical system serves as an extra-thalamic relay from the brainstem reticular activating system to the cerebral cortex. As Mircea Steriade documented, activating impulses are transmitted through either the nonspecific thalamo-cortical projection system or the basalo-cortical projection system to stimulate widespread, fast, cortical activity that is characteristic of the activation that occurs naturally during waking (W) and paradoxical sleep (PS) states. However, basal forebrain (BF) neurons are different from thalamic neurons in several ways. First, many cortically projecting BF neurons utilize acetylcholine (ACh), which has a crucial role in stimulating fast cortical activity. Second, ACh-releasing neurons discharge selectively during W and PS and cease firing during slow-wave sleep (SWS). Third, ACh-releasing neurons discharge rhythmically in bursts during cortical activation and can, thus, modulate the cortex in a slow rhythmic manner to facilitate coherent activity across broad cortical networks. Fourth, the rhythmic discharge by BF neurons that release ACh, GABA or glutamate and project to the cortex occurs at respiratory or theta frequencies of the olfactory and limbic cortices, which reveals the particular importance of these inputs as well as outputs within basalo-cortico-basalo circuits. Fifth, other noncholinergic BF neurons, including GABA-releasing neurons, are active selectively during sleep: some of these potentially promote slow-wave activity during SWS through cortical projections; and others might promote behavioral quiescence during SWS and PS through descending projections. Finally, BF neurons also project to the thalamus and might, thus, either recruit or join thalamic neurons in modulating cortical activity across the sleep–waking cycle.
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