Gu Yu, Cang Jianhua
Department of Neurobiology, Northwestern University, Evanston, United States.
Elife. 2016 Dec 29;5:e22032. doi: 10.7554/eLife.22032.
Visual cortical neurons are tuned to similar orientations through the two eyes. The binocularly-matched orientation preference is established during a critical period in early life, but the underlying circuit mechanisms remain unknown. Here, we optogenetically isolated the thalamocortical and intracortical excitatory inputs to individual layer 4 neurons and studied their binocular matching. In adult mice, the thalamic and cortical inputs representing the same eyes are similarly tuned and both are matched binocularly. In mice before the critical period, the thalamic input is already slightly matched, but the weak matching is not manifested due to random connections in the cortex, especially those serving the ipsilateral eye. Binocular matching is thus mediated by orientation-specific changes in intracortical connections and further improvement of thalamic matching. Together, our results suggest that the feed-forward thalamic input may play a key role in initiating and guiding the functional refinement of cortical circuits in critical period development.
视觉皮层神经元通过双眼被调谐到相似的方向。双眼匹配的方向偏好是在生命早期的关键期建立的,但其潜在的神经回路机制仍不清楚。在这里,我们用光遗传学方法分离了单个第4层神经元的丘脑皮质和皮质内兴奋性输入,并研究了它们的双眼匹配情况。在成年小鼠中,代表同一只眼睛的丘脑和皮质输入被类似地调谐,并且两者都是双眼匹配的。在关键期之前的小鼠中,丘脑输入已经略有匹配,但由于皮质中的随机连接,尤其是那些服务于同侧眼的连接,这种微弱的匹配并未表现出来。因此,双眼匹配是由皮质内连接的方向特异性变化和丘脑匹配的进一步改善介导的。总之,我们的结果表明,前馈丘脑输入可能在关键期发育中启动和引导皮质回路的功能细化方面发挥关键作用。