Nicolelis M A, Baccala L A, Lin R C, Chapin J K
Department of Anatomy and Neurobiology, Medical College of Pennsylvania, Philadelphia, USA.
Science. 1995 Jun 2;268(5215):1353-8. doi: 10.1126/science.7761855.
Neural ensemble processing of sensorimotor information during behavior was investigated by simultaneously recording up to 48 single neurons at multiple relays of the rat trigeminal somatosensory system. Cortical, thalamic, and brainstem neurons exhibited widespread 7- to 12-hertz synchronous oscillations, which began during attentive immobility and reliably predicted the imminent onset of rhythmic whisker twitching. Each oscillatory cycle began as a traveling wave of neural activity in the cortex that then spread to the thalamus. Just before the onset of rhythmic whisker twitching, the oscillations spread to the spinal trigeminal brainstem complex. Thereafter, the oscillations at all levels were synchronous with whisker protraction. Neural structures manifesting these rhythms also exhibited distributed spatiotemporal patterns of neuronal ensemble activity in response to tactile stimulation. Thus, multilevel synchronous activity in this system may encode not only sensory information but also the onset and temporal domain of tactile exploratory movements.
通过同时记录大鼠三叉神经体感系统多个中继点的多达48个单神经元,研究了行为过程中感觉运动信息的神经集合处理。皮层、丘脑和脑干神经元表现出广泛的7至12赫兹同步振荡,这种振荡在注意力集中的静止状态下开始,并可靠地预测有节奏的触须抽动即将开始。每个振荡周期开始时是皮层中神经活动的行波,然后传播到丘脑。就在有节奏的触须抽动开始之前,振荡传播到三叉神经脊髓脑干复合体。此后,所有水平的振荡都与触须前伸同步。表现出这些节律的神经结构在对触觉刺激的反应中也表现出神经元集合活动的分布式时空模式。因此,该系统中的多级同步活动可能不仅编码感觉信息,还编码触觉探索运动的开始和时域。