Pafundo Diego E, Nicholas Mark A, Zhang Ruilin, Kuhlman Sandra J
Department of Biological Sciences and Center for the Neural Basis of Cognition, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213.
Department of Biological Sciences and Center for the Neural Basis of Cognition, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213
J Neurosci. 2016 Mar 9;36(10):2904-14. doi: 10.1523/JNEUROSCI.2909-15.2016.
Response properties in primary sensory cortices are highly dependent on behavioral state. For example, the nucleus basalis of the forebrain plays a critical role in enhancing response properties of excitatory neurons in primary visual cortex (V1) during active exploration and learning. Given the strong reciprocal connections between hierarchically arranged cortical regions, how are increases in sensory response gain constrained to prevent runaway excitation? To explore this, we used in vivo two-photon guided cell-attached recording in conjunction with spatially restricted optogenetic photo-inhibition of higher-order visual cortex in mice. We found that the principle feedback projection to V1 originating from the lateral medial area (LM) facilitated visual responses in layer 2/3 excitatory neurons by ∼20%. This facilitation was reduced by half during basal forebrain activation due to differential response properties between LM and V1. Our results demonstrate that basal-forebrain-mediated increases in response gain are localized to V1 and are not propagated to LM and establish that subcortical modulation of visual cortex is regionally distinct.
初级感觉皮层的反应特性高度依赖于行为状态。例如,前脑基底核在主动探索和学习过程中对增强初级视觉皮层(V1)中兴奋性神经元的反应特性起着关键作用。鉴于分层排列的皮层区域之间存在强大的相互连接,那么感觉反应增益的增加是如何受到限制以防止失控兴奋的呢?为了探究这一点,我们结合对小鼠高阶视觉皮层进行空间限制的光遗传学光抑制,使用了体内双光子引导的细胞贴附记录。我们发现,源自外侧内侧区(LM)的到V1的主要反馈投射使第2/3层兴奋性神经元的视觉反应增强了约20%。由于LM和V1之间不同的反应特性,在前脑基底激活期间,这种促进作用减半。我们的结果表明,前脑基底介导的反应增益增加局限于V1,不会传播到LM,并证实视觉皮层的皮层下调制在区域上是不同的。