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两类丘脑网状核神经元的爆发性放电和紧张性放电

Bursting and tonic discharges in two classes of reticular thalamic neurons.

作者信息

Contreras D, Curró Dossi R, Steriade M

机构信息

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

出版信息

J Neurophysiol. 1992 Sep;68(3):973-7. doi: 10.1152/jn.1992.68.3.973.

Abstract
  1. Two types of cat reticular (RE) thalamic cells were disclosed by means of intracellular recordings under urethan anesthesia. The RE neurons were identified by their typical depolarizing spindle oscillations in response to synchronous stimulation of the internal capsule. 2. In type I neurons (n = 41), depolarizing current pulses induced tonic firing at the resting or slightly depolarized membrane potential (Vm) and triggered high-frequency spike bursts at a Vm more negative than -75 mV. As well, these cells discharged rebound bursts at the break of a hyperpolarizing current pulse. Internal capsule stimulation elicited spindle sequences made off by depolarizing waves giving rise to spike bursts. 3. Type II cells (n = 9) did not discharge spike bursts to large depolarizing current pulses even when the Vm reached -100 mV, nor did they fire rebound bursts after long-lasting hyperpolarizing current pulses or spike bursts riding on the rhythmic depolarizing components of spindle sequences. 4. Compared with type I cells, type II cells showed less frequency accommodation during tonic firing. The latter neuronal class discharged at high frequencies (40 Hz) with slight DC depolarization, approximately 8-10 Hz at the resting Vm, and no underlying synaptic or subthreshold oscillatory events could be detected when the firing was blocked by DC hyperpolarization. 5. The presence of two cell classes in the RE nucleus challenges the common view that this nucleus consists of a single neuronal class. We suggest that a different set of conductances is present in type II RE neurons, thus preventing the low-threshold Ca2+ current from dominating the behavior of these cells.
摘要
  1. 在乌拉坦麻醉下,通过细胞内记录揭示了猫网状丘脑细胞的两种类型。通过对内囊进行同步刺激时其典型的去极化纺锤波振荡来识别RE神经元。2. 在I型神经元(n = 41)中,去极化电流脉冲在静息或轻度去极化膜电位(Vm)时诱导紧张性放电,并在Vm比-75 mV更负时触发高频棘波爆发。同样,这些细胞在超极化电流脉冲中断时释放反弹爆发。内囊刺激引发由去极化波产生棘波爆发的纺锤波序列。3. II型细胞(n = 9)即使Vm达到-100 mV也不会对大的去极化电流脉冲产生棘波爆发,在长时间超极化电流脉冲后也不会产生反弹爆发,或者在纺锤波序列的节律性去极化成分上也不会产生棘波爆发。4. 与I型细胞相比,II型细胞在紧张性放电期间频率适应性较低。后一类神经元在轻微直流去极化时以高频(40 Hz)放电,在静息Vm时约为8 - 10 Hz,当放电被直流超极化阻断时,未检测到潜在的突触或阈下振荡事件。5. RE核中存在两种细胞类型挑战了该核由单一神经元类型组成的普遍观点。我们认为II型RE神经元中存在不同的电导集,从而阻止低阈值Ca2+电流主导这些细胞的行为。

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