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全身应用阿托品诱发的δ波的电微生理学

The electromicrophysiology of delta waves induced by systemic atropine.

作者信息

Schaul N, Gloor P, Ball G, Gotman J

出版信息

Brain Res. 1978 Mar 31;143(3):475-86. doi: 10.1016/0006-8993(78)90358-x.

Abstract

Delta waves in the EEG can be induced by the intravenous administration of atropine. In cats we have investigated with several computer averaging programs the relationship of extracellular unit discharge to the EEG on the surface and within the cortex. We have also studied the laminar profiles and the vertical current density profiles of these slow waves. Our results indicate that surface-positive delta waves are related to events associated with excitation of cortical neurons, while surface-negative delta waves are related to a decreased probability of unit firing suggesting the possibility of inhibition. Laminar analysis of atropine-induced slow waves indicated that these were probably generated by pyramidal cells in a similar way to delta waves induced by brain lesions. These results suggest that a disturbance in cholinergic input to the cortex might be responsible for delta waves in the EEG.

摘要

脑电图中的δ波可通过静脉注射阿托品诱发。在猫身上,我们使用了几个计算机平均程序来研究皮层表面和皮层内细胞外单位放电与脑电图的关系。我们还研究了这些慢波的层状分布和垂直电流密度分布。我们的结果表明,表面阳性δ波与皮层神经元兴奋相关的事件有关,而表面阴性δ波与单位放电概率降低有关,提示存在抑制的可能性。对阿托品诱发的慢波进行层状分析表明,这些慢波可能是以与脑损伤诱发的δ波类似的方式由锥体细胞产生的。这些结果表明,皮层胆碱能输入的紊乱可能是脑电图中δ波的原因。

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