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首页> 外文期刊>The Journal of Neuroscience: The Official Journal of the Society for Neuroscience >Differentiated participation of thalamocortical subnetworks in slow/spindle waves and desynchronization
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Differentiated participation of thalamocortical subnetworks in slow/spindle waves and desynchronization

机译:丘脑皮质子网在慢/主轴波和去同步中的差异参与

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During sleep, the electroencephalogram exhibits synchronized slow waves that desynchronize when animals awaken [desynchronized states (DSs)]. During slow-wave states, the membrane potentials of cortical neurons oscillate between discrete depolarized states ("Up states") and periods of hyperpolarization ("Down states"). To determine the role of corticothalamic loops in generating Up/Down oscillations in rats, we recorded unit activities of layer 5 (L5) corticothalamic (CTh) cells in the frontal cortex, neurons in the thalamic reticular nucleus, and basal ganglia-and cerebellum-linked thalamic relay nuclei, while simultaneously monitoring the local cortical field potential to identify slow-wave/spindle oscillations and desynchronization. We found that (1) some basal ganglia-linked and reticular thalamic cells fire preferentially near the beginning of Up states; (2) thalamic cells fire more selectively at a given Up-state phase than do CTh cells; (3) CTh and thalamic cells exhibit different action potential timings within spindle cycles; and (4) neurons exhibit different firing characteristics when comparing their activity during Up states and DSs. These data demonstrate that cortico-thalamo-cortical subnetworks are temporally differentiated during slow and spindle oscillations, that the basal ganglia-linked thalamic nuclei are closely related with Up-state initiation, and that Up states and DSs are distinguished as different depolarization states of neurons within the network.
机译:在睡眠过程中,脑电图会显示出同步的慢波,当动物醒来时,它们会失步[失步状态(DSs)]。在慢波状态期间,皮质神经元的膜电位在离散的去极化状态(“向上状态”)和超极化周期(“向下状态”)之间振荡。为了确定皮质丘脑回路在大鼠上/下振荡中的作用,我们记录了额叶皮层中第5层(L5)皮质丘脑(CTh)细胞,丘脑网状核中的神经元以及基底神经节和小脑-的单位活动链接丘脑中继核,同时监视局部皮层电场电势,以识别慢波/主轴振荡和去同步。我们发现(1)在Up状态开始时,一些基底神经节连接的和网状丘脑细胞优先着火; (2)在给定的Up状态阶段,丘脑细胞比CTh细胞更有选择性地激发; (3)CTh和丘脑细胞在纺锤周期内表现出不同的动作电位时机; (4)当比较它们在Up状态和DS期间的活动时,神经元表现出不同的放电特性。这些数据表明,在缓慢和纺锤体振荡期间,皮质-丘脑-皮质子网络在时间上是不同的;与基底神经节相连的丘脑核与Up状态的启动密切相关; Up状态和DSs被区分为神经元的不同去极化状态。在网络内。

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