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大鼠海马门区的齿状脑电图尖峰及相关中间神经元群体爆发。

Dentate EEG spikes and associated interneuronal population bursts in the hippocampal hilar region of the rat.

作者信息

Bragin A, Jandó G, Nádasdy Z, van Landeghem M, Buzsáki G

机构信息

Center for Molecular and Behavioral Neuroscience, Rutgers, State University of New Jersey, Newark 07102, USA.

出版信息

J Neurophysiol. 1995 Apr;73(4):1691-705. doi: 10.1152/jn.1995.73.4.1691.

Abstract
  1. This paper describes two novel population patterns in the dentate gyrus of the awake rat, termed type 1 and type 2 dentate spikes (DS1, DS2). Their cellular generation and spatial distribution were examined by simultaneous recording of field potentials and unit activity using multiple-site silicon probes and wire electrode arrays. 2. Dentate spikes were large amplitude (2-4 mV), short duration (< 30 ms) field potentials that occurred sparsely during behavioral immobility and slow-wave sleep. Current-source density analysis revealed large sinks in the outer (DS1) and middle (DS2) thirds of the dentate molecular layer, respectively. DS1 and DS2 had similar longitudinal, lateral, and interhemispheric synchrony. 3. Dentate spikes invariably were coupled to synchronous population bursts of putative hilar interneurons. CA3 pyramidal cells, on the other hand were suppressed during dentate spikes. 4. After bilateral removal of the entorhinal cortex, dentate spikes disappeared, whereas sharp wave-associated bursts, reflecting synchronous discharge of the CA3-CA1 network, increased several fold. 5. These physiological characteristics of the dentate spikes suggest that they are triggered by a population burst of layer II stellate cells of the lateral (DS1) and medial (DS2) entorhinal cortex. 6. We suggest that dentate spike-associated synchronized bursts of hilar-region interneurons provide a suppressive effect on the excitability of the CA3-CA1 network in the intact brain.
摘要
  1. 本文描述了清醒大鼠齿状回中两种新的群体模式,称为1型和2型齿状尖峰(DS1、DS2)。使用多部位硅探针和线电极阵列同时记录场电位和单位活动,研究了它们的细胞产生和空间分布。2. 齿状尖峰是在行为静止和慢波睡眠期间稀疏出现的高振幅(2 - 4 mV)、短持续时间(< 30 ms)的场电位。电流源密度分析显示,在齿状分子层的外三分之一(DS1)和中三分之一(DS2)分别有大的电流汇。DS1和DS2具有相似的纵向、横向和半球间同步性。3. 齿状尖峰总是与假定的海马门区中间神经元的同步群体爆发相关联。另一方面,在齿状尖峰期间,CA3锥体细胞受到抑制。4. 双侧切除内嗅皮质后,齿状尖峰消失,而反映CA3 - CA1网络同步放电的尖波相关爆发增加了几倍。5. 齿状尖峰的这些生理特征表明,它们是由外侧(DS1)和内侧(DS2)内嗅皮质II层星状细胞的群体爆发触发的。6. 我们认为,齿状尖峰相关的海马门区中间神经元同步爆发对完整大脑中CA3 - CA1网络的兴奋性具有抑制作用。

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