RIKEN Brain Science Institute Wako, Japan.
Front Comput Neurosci. 2011 Jul 8;5:31. doi: 10.3389/fncom.2011.00031. eCollection 2011.
A vast amount of information about the external world continuously flows into the brain, whereas its capacity to process such information is limited. Attention enables the brain to allocate its resources of information processing to selected sensory inputs for reducing its computational load, and effects of attention have been extensively studied in visual information processing. However, how the microcircuit of the visual cortex processes attentional information from higher areas remains largely unknown. Here, we explore the complex interactions between visual inputs and an attentional signal in a computational model of the visual cortical microcircuit. Our model not only successfully accounts for previous experimental observations of attentional effects on visual neuronal responses, but also predicts contrasting differences in the attentional effects of top-down signals between cortical layers: attention to a preferred stimulus of a column enhances neuronal responses of layers 2/3 and 5, the output stations of cortical microcircuits, whereas attention suppresses neuronal responses of layer 4, the input station of cortical microcircuits. We demonstrate that the specific modulation pattern of layer-4 activity, which emerges from inter-laminar synaptic connections, is crucial for a rapid shift of attention to a currently unattended stimulus. Our results suggest that top-down signals act differently on different layers of the cortical microcircuit.
大量关于外部世界的信息不断流入大脑,而大脑处理这些信息的能力是有限的。注意力使大脑能够将其信息处理资源分配给选定的感官输入,以减轻其计算负荷,并且注意力的影响在视觉信息处理中得到了广泛的研究。然而,视觉皮层的微电路如何处理来自更高区域的注意力信息在很大程度上仍然未知。在这里,我们在视觉皮层微电路的计算模型中探索了视觉输入和注意力信号之间的复杂相互作用。我们的模型不仅成功地解释了先前关于注意力对视觉神经元反应影响的实验观察,而且还预测了来自上的信号的注意力效应在皮层各层之间的差异:对柱的首选刺激的注意增强了皮层微电路的输出站(2/3 和 5 层)的神经元反应,而注意力则抑制了皮层微电路的输入站(4 层)的神经元反应。我们证明了来自层间突触连接的层-4 活动的特定调制模式对于将注意力快速转移到当前未被注意的刺激至关重要。我们的结果表明,自上而下的信号在皮层微电路的不同层上的作用不同。