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Infragranular layers lead information flow during slow oscillations according to information directionality indicators

机译:根据信息方向性指标,下层颗粒在缓慢振荡期间引导信息流

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The recurrent circuitry of the cerebral cortex generates an emergent pattern of activity that is organized into rhythmic periods of firing and silence referred to as slow oscillations (ca 1 Hz). Slow oscillations not only are dominant during slow wave sleep and deep anesthesia, but also can be generated by the isolated cortical network in vitro, being a sort of default activity of the cortical network. The cortex is densely and reciprocally connected with subcortical structures and, as a result, the slow oscillations in situ are the result of an interplay between cortex and thalamus. Due to this reciprocal connectivity and interplay, the mechanism responsible for the initiation of waves in the corticothalamocortical loop during slow oscillations is still a matter of debate. It was our objective to determine the directionality of the information flow between different layers of the cortex and the connected thalamus during spontaneous activity. With that purpose we obtained multilayer local field potentials from the rat visual cortex and from its connected thalamus, the lateral geniculate nucleus, during deep anaesthesia. We analyzed directionality of information flow between thalamus, cortical infragranular layers (5 and 6) and supragranular layers (2/3) by means of three information theoretical indicators: transfer entropy, symbolic transfer entropy and transcript mutual information. These three indicators coincided in finding that infragranular layers lead the information flow during slow oscillations both towards supragranular layers and towards the thalamus.
机译:大脑皮层的循环电路会产生一种活动的新兴模式,该模式被组织为激发和沉默的节奏周期,称为缓慢振荡(大约1 Hz)。慢振荡不仅在慢波睡眠和深度麻醉中占主导地位,而且还可以由离体的皮质网络在体外产生,这是皮质网络的一种默认活动。皮层与皮层下结构紧密且相互联系,结果,原位缓慢的振荡是皮层和丘脑之间相互作用的结果。由于这种相互的连通性和相互作用,在缓慢振荡期间负责在皮层-皮质-皮层环路中引发波的机制仍然是一个有争议的问题。我们的目标是确定自发活动期间皮质不同层和相连丘脑之间信息流的方向。为此,我们在深度麻醉期间从大鼠的视觉皮层及其相连的丘脑(外侧膝状核)获得了多层局部场电位。我们通过三种信息理论指标:转移熵,符号转移熵和转录本互信息,分析了丘脑,皮质下层(5和6)和颗粒上层(2/3)之间信息流的方向性。这三个指标的吻合之处在于,在缓慢振荡的过程中,无论是沿下层还是朝丘脑,沿下层引导信息流。

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