The Danish Research Institute of Translational Neuroscience-DANDRITE, Nordic EMBL Partnership for Molecular Medicine, Department of Biomedicine, Aarhus University, Aarhus, Denmark.
Front Neural Circuits. 2017 Dec 22;11:109. doi: 10.3389/fncir.2017.00109. eCollection 2017.
A withstanding question in neuroscience is how neural circuits encode representations and perceptions of the external world. A particularly well-defined visual computation is the representation of global object motion by pattern direction-selective (PDS) cells from convergence of motion of local components represented by component direction-selective (CDS) cells. However, how PDS and CDS cells develop their distinct response properties is still unresolved. The visual cortex of the mouse is an attractive model for experimentally solving this issue due to the large molecular and genetic toolbox available. Although mouse visual cortex lacks the highly ordered orientation columns of primates, it is organized in functional sub-networks and contains striate- and extrastriate areas like its primate counterparts. In this Perspective article, we provide an overview of the experimental and theoretical literature on global motion processing based on works in primates and mice. Lastly, we propose what types of experiments could illuminate what circuit mechanisms are governing cortical global visual motion processing. We propose that PDS cells in mouse visual cortex appear as the perfect arena for delineating and solving how individual sensory features extracted by neural circuits in peripheral brain areas are integrated to build our rich cohesive sensory experiences.
神经科学中一个悬而未决的问题是神经回路如何对外部世界的表示和感知进行编码。一个特别明确的视觉计算是由模式方向选择性(PDS)细胞对局部成分运动的会聚进行的全局物体运动的表示,这些局部成分由组件方向选择性(CDS)细胞表示。然而,PDS 和 CDS 细胞如何发展出其独特的反应特性仍未解决。由于具有大量的分子和遗传工具包,老鼠的视觉皮层是一个很有吸引力的实验模型,可以用来解决这个问题。虽然老鼠的视觉皮层缺乏灵长类动物高度有序的方位柱,但它在功能上是由子网组织的,并且包含条纹状和纹外区域,就像其灵长类动物的对应物一样。在这篇观点文章中,我们提供了基于灵长类动物和老鼠的工作的关于全局运动处理的实验和理论文献的概述。最后,我们提出了什么样的实验可以阐明哪些电路机制支配着皮层的全局视觉运动处理。我们提出,老鼠视觉皮层中的 PDS 细胞似乎是划定和解决外围大脑区域的神经回路提取的单个感觉特征如何整合以构建我们丰富的连贯感觉体验的完美场所。