Kenet Tal, Bibitchkov Dmitri, Tsodyks Misha, Grinvald Amiram, Arieli Amos
Department of Neurobiology, The Weizmann Institute of Science, Rehovot 76100, Israel. (
Nature. 2003 Oct 30;425(6961):954-6. doi: 10.1038/nature02078.
Spontaneous cortical activity--ongoing activity in the absence of intentional sensory input--has been studied extensively, using methods ranging from EEG (electroencephalography), through voltage sensitive dye imaging, down to recordings from single neurons. Ongoing cortical activity has been shown to play a critical role in development, and must also be essential for processing sensory perception, because it modulates stimulus-evoked activity, and is correlated with behaviour. Yet its role in the processing of external information and its relationship to internal representations of sensory attributes remains unknown. Using voltage sensitive dye imaging, we previously established a close link between ongoing activity in the visual cortex of anaesthetized cats and the spontaneous firing of a single neuron. Here we report that such activity encompasses a set of dynamically switching cortical states, many of which correspond closely to orientation maps. When such an orientation state emerged spontaneously, it spanned several hypercolumns and was often followed by a state corresponding to a proximal orientation. We suggest that dynamically switching cortical states could represent the brain's internal context, and therefore reflect or influence memory, perception and behaviour.
自发皮层活动——在没有有意感觉输入时的持续活动——已经被广泛研究,使用的方法从脑电图(EEG),到电压敏感染料成像,再到单个神经元记录。持续的皮层活动已被证明在发育中起关键作用,并且对于处理感觉知觉也必定至关重要,因为它调节刺激诱发的活动,并与行为相关。然而,其在外部信息处理中的作用及其与感觉属性内部表征的关系仍然未知。利用电压敏感染料成像,我们先前在麻醉猫的视觉皮层中的持续活动与单个神经元的自发放电之间建立了紧密联系。在此我们报告,这种活动包含一组动态切换的皮层状态,其中许多与方位图密切对应。当这样的方位状态自发出现时,它跨越几个超柱,并且常常随后是对应于近端方位的状态。我们认为,动态切换的皮层状态可能代表大脑的内部背景,因此反映或影响记忆、感知和行为。