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背外侧膝状神经元内在的和突触产生的δ(1 - 4赫兹)节律及其受光诱导的快速(30 - 70赫兹)事件的调节。

Intrinsic and synaptically generated delta (1-4 Hz) rhythms in dorsal lateral geniculate neurons and their modulation by light-induced fast (30-70 Hz) events.

作者信息

Nuñez A, Amzica F, Steriade M

机构信息

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

出版信息

Neuroscience. 1992 Nov;51(2):269-84. doi: 10.1016/0306-4522(92)90314-r.

Abstract

Thalamocortical neurons of cat dorsal lateral geniculate nucleus were recorded under urethane anesthesia. Neurons were identified by antidromic invasion from the internal capsule and by orthodromic stimulation from the optic chiasm or light stimuli. An intrinsic oscillation within the frequency of sleep delta waves (1-4 Hz) was induced by hyperpolarizing current pulses triggering a rhythmic sequence of low-threshold spikes alternating with after hyperpolarizing potentials. The increased propensity to oscillation after blockage of inputs arising in the retina indicates that afferent synaptic drives interfere with the intrinsic oscillation of lateral geniculate cells. The relatively rare occurrence of this type of oscillation in impaled neurons, as compared with extracellular recordings in the same nucleus or to intracellular recordings in other dorsal thalamic nuclei, suggests that the interplay between the two intrinsic currents generating delta oscillation is particularly critical in lateral geniculate cells. Another type of delta oscillation was characterized by excitatory postsynaptic potentials which gave rise to action potentials or to low-threshold spikes at more depolarized or hyperpolarized levels, respectively. It is suggested that this rhythm reflects synaptic coupling by intranuclear recurrent axonal collaterals. Light stimulation induced fast (30-70 Hz) excitatory events that were blocked after lidocaine injections into the eye. In all tested cells, changes in the ambient luminosity of the experimental room blocked the intrinsic as well as the synaptic oscillation within the delta frequency. In some cells, this suppressing effect was associated with depolarization and increased firing rate. These results demonstrate different types of sleep delta oscillations in visual thalamic neurons and show that they are modulated not only by brainstem regulatory systems, but also by specific drives along the visual channel.

摘要

在氨基甲酸乙酯麻醉下记录猫背外侧膝状核的丘脑皮质神经元。通过来自内囊的逆向冲动和来自视交叉的顺向刺激或光刺激来识别神经元。通过超极化电流脉冲诱发睡眠δ波频率(1-4赫兹)内的固有振荡,该脉冲触发低阈值尖峰与超极化后电位交替出现的节律性序列。视网膜输入被阻断后振荡倾向增加,这表明传入突触驱动会干扰外侧膝状核细胞的固有振荡。与在同一核中的细胞外记录或其他背侧丘脑核中的细胞内记录相比,在刺入的神经元中这种振荡类型相对少见,这表明产生δ振荡的两种固有电流之间的相互作用在外侧膝状核细胞中尤为关键。另一种类型的δ振荡的特征是兴奋性突触后电位,分别在更去极化或超极化水平产生动作电位或低阈值尖峰。有人认为这种节律反映了核内反复轴突侧支的突触耦合。光刺激诱发快速(30-70赫兹)兴奋性事件,在向眼睛注射利多卡因后这些事件被阻断。在所有测试细胞中,实验室环境光照度的变化阻断了δ频率内的固有振荡和突触振荡。在一些细胞中,这种抑制作用与去极化和放电率增加有关。这些结果证明了视觉丘脑神经元中不同类型的睡眠δ振荡,并表明它们不仅受脑干调节系统的调节,还受沿视觉通道的特定驱动的调节。

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