Werner Reichardt Centre for Integrative Neuroscience, University of Tübingen, 72076 Tübingen, Germany; Graduate Training Centre of Neuroscience, University of Tübingen, 72074 Tübingen, Germany.
Werner Reichardt Centre for Integrative Neuroscience, University of Tübingen, 72076 Tübingen, Germany; Department of Neurobiology and Biophysics, Faculty of Natural Sciences, Vilnius University, 03101 Vilnius, Lithuania.
Curr Biol. 2014 Dec 15;24(24):2899-907. doi: 10.1016/j.cub.2014.10.045. Epub 2014 Dec 4.
Neural responses in visual cortex depend not only on sensory input but also on behavioral context. One such context is locomotion, which modulates single-neuron activity in primary visual cortex (V1). How locomotion affects neuronal populations across cortical layers and in precortical structures is not well understood.
We performed extracellular multielectrode recordings in the visual system of mice during locomotion and stationary periods. We found that locomotion influenced activity of V1 neurons with a characteristic laminar profile and shaped the population response by reducing pairwise correlations. Although the reduction of pairwise correlations was restricted to cortex, locomotion slightly but consistently increased firing rates and controlled tuning selectivity already in the dorsolateral geniculate nucleus (dLGN) of the thalamus. At the level of the eye, increases in locomotion speed were associated with pupil dilation.
These findings document further, nonmultiplicative effects of locomotion, reaching earlier processing stages than cortex.
视觉皮层中的神经反应不仅取决于感觉输入,还取决于行为背景。其中一个背景是运动,它会调节初级视觉皮层(V1)中的单个神经元活动。运动如何影响皮质层和皮质前结构中的神经元群体尚不清楚。
我们在运动和静止期间在小鼠的视觉系统中进行了细胞外多电极记录。我们发现,运动以特征性的分层方式影响 V1 神经元的活动,并通过减少成对相关性来塑造群体反应。尽管成对相关性的减少仅限于皮层,但运动仍会略微但一致地增加丘脑外侧膝状体核(dLGN)的神经元发放率,并控制调谐选择性。在眼部水平,运动速度的增加与瞳孔扩张有关。
这些发现记录了运动的进一步非倍增效应,其影响达到了比皮层更早的处理阶段。