Department of Neuroscience and Brain Technologies, Istituto Italiano di Tecnologia, Via Morego 30, 16163 Genova, Italy.
Neuron. 2012 Feb 23;73(4):814-28. doi: 10.1016/j.neuron.2011.12.026.
Multimodal objects and events activate many sensory cortical areas simultaneously. This is possibly reflected in reciprocal modulations of neuronal activity, even at the level of primary cortical areas. However, the synaptic character of these interareal interactions, and their impact on synaptic and behavioral sensory responses are unclear. Here, we found that activation of auditory cortex by a noise burst drove local GABAergic inhibition on supragranular pyramids of the mouse primary visual cortex, via cortico-cortical connections. This inhibition was generated by sound-driven excitation of a limited number of cells in infragranular visual cortical neurons. Consequently, visually driven synaptic and spike responses were reduced upon bimodal stimulation. Also, acoustic stimulation suppressed conditioned behavioral responses to a dim flash, an effect that was prevented by acute blockade of GABAergic transmission in visual cortex. Thus, auditory cortex activation by salient stimuli degrades potentially distracting sensory processing in visual cortex by recruiting local, translaminar, inhibitory circuits.
多模态物体和事件会同时激活许多感觉皮层区域。这种情况可能反映在神经元活动的相互调制中,即使在初级皮层区域也是如此。然而,这些区域间相互作用的突触特征及其对突触和行为感觉反应的影响尚不清楚。在这里,我们发现,通过皮层-皮层连接,由噪声突发引起的听觉皮层激活会驱动小鼠初级视觉皮层的颗粒上锥体的局部 GABA 能抑制。这种抑制是由声音驱动的少数颗粒下视觉皮层神经元的细胞兴奋产生的。因此,在双模态刺激下,视觉驱动的突触和尖峰反应减少。此外,声刺激抑制了对弱闪光的条件行为反应,而急性阻断视觉皮层中的 GABA 能传递可防止这种效应。因此,由显著刺激引起的听觉皮层激活通过募集局部、跨层、抑制性回路来降低视觉皮层中潜在的分散注意力的感觉处理。