Martinez L M
Departamento de Medicina, Facultade de Ciencias da Saude, Campus de Oza, Universidade da Coruña, 15006 La Coruña, Spain.
Prog Brain Res. 2006;154:73-92. doi: 10.1016/S0079-6123(06)54004-X.
Cells in primary visual cortex show a remarkable variety of receptive-field structures. In spite of the extensive experimental and theoretical effort over the past 50 years, it has been difficult to establish how this diversity of functional-response properties emerges in the cortex. One of the reasons is that while functional studies in the early visual pathway have been usually carried out in vivo with extracellular recording techniques, investigations about the precise structure of the cortical network have mainly been conducted in vitro. Thus, the link between structure and function has rarely been explicitly established, remaining a well-known controversial issue. In this chapter, I review recent data that simultaneously combines anatomy with physiology at the intracellular level; trying to understand how the primary visual cortex transforms the information it receives from the thalamus to generate receptive-field structure, contrast-invariant orientation tuning and other functional-response properties.
初级视觉皮层中的细胞表现出多种多样的感受野结构。尽管在过去50年里进行了广泛的实验和理论研究,但一直难以确定这种功能反应特性的多样性是如何在皮层中出现的。原因之一是,虽然早期视觉通路的功能研究通常是在体内使用细胞外记录技术进行的,但关于皮层网络精确结构的研究主要是在体外进行的。因此,结构与功能之间的联系很少被明确建立起来,仍然是一个众所周知的有争议的问题。在本章中,我将回顾最近在细胞内水平上同时结合解剖学和生理学的数据;试图了解初级视觉皮层如何转换从丘脑接收的信息,以产生感受野结构、对比度不变的方向调谐和其他功能反应特性。