Schutter Dennis J L G, van Honk Jack
Helmholtz Research Institute, Experimental Psychology Utrecht University, Heidelberglaan 2, 3584 CS Utrecht, The Netherlands.
Neuroimage. 2006 Dec;33(4):1227-31. doi: 10.1016/j.neuroimage.2006.06.055. Epub 2006 Oct 4.
Early intracranial electrical stimulation studies in animals demonstrated cerebellar connectivity to brain structures involved in cognitive and emotive functions. Human electrophysiological data to support cerebellum involvement in the latter functions are however lacking. In the present study, electrophysiological responses were recorded to single-pulse transcranial magnetic stimulation (TMS) over the vermis in healthy human volunteers. Increased theta activity was observed after single-pulse vermis TMS as compared to sham and occipital TMS. Both animal and human research relate theta activity with the septo-hippocampal complex, an important brain structure involved in cognition and emotion. The present electrophysiological study supports the earlier intracranial electrical stimulation findings by demonstrating cerebellar involvement in the modulation of the core frequencies related to cognitive and emotive aspects of human behavior.
早期对动物进行的颅内电刺激研究表明,小脑与参与认知和情感功能的脑结构存在联系。然而,目前缺乏支持小脑参与后者功能的人类电生理数据。在本研究中,对健康人类志愿者的蚓部进行单脉冲经颅磁刺激(TMS),并记录其电生理反应。与假刺激和枕叶TMS相比,单脉冲蚓部TMS后观察到θ活动增加。动物和人类研究均将θ活动与隔-海马复合体联系起来,隔-海马复合体是参与认知和情感的重要脑结构。本电生理研究通过证明小脑参与调节与人类行为的认知和情感方面相关的核心频率,支持了早期颅内电刺激的研究结果。