Stem Cell and Brain Research Institute, INSERM U846, 18 Avenue Doyen Lepine, 69500 Bron, France.
Curr Opin Neurobiol. 2013 Apr;23(2):187-94. doi: 10.1016/j.conb.2012.12.008. Epub 2013 Jan 19.
Our understanding of cortical electrophysiology and anatomy at the single-cell level has led to the present day insight in to the function of connections linking cortical areas. This made it possible to elaborate the cortical hierarchy in the early 1990s and was a prerequisite for the development of present day generative models of perception. These computational hierarchical models make strong predictions concerning the roles of feedforward (FF) and feedback (FB) pathways, including their segregation and topographical precision in both directions. This shows that instead of a single stream in the upper and lower compartments of the cortex there is in fact a bi-directional counter-stream in each compartment of the cortex. A significant advance in this field will require more detailed anatomy hand in hand with a network analysis of the directed and weighted cortical matrix.
我们对皮质电生理学和单细胞水平解剖结构的理解,使我们对连接皮质区域的连接功能有了目前的认识。这使得我们在 20 世纪 90 年代早期能够详细阐述皮质层次结构,并为当前感知生成模型的发展奠定了基础。这些计算层次模型对前馈 (FF) 和反馈 (FB) 通路的作用做出了强有力的预测,包括它们在两个方向上的分离和地形精确性。这表明,实际上,在皮质的上下隔室中存在的不是单一的流,而是在每个隔室中存在一个双向的反向流。该领域的一个重大进展将需要更详细的解剖结构,并与定向和加权皮质矩阵的网络分析相结合。