von Seelen W, Mallot H A, Giannakopoulos F
Biol Cybern. 1987;56(1):37-49. doi: 10.1007/BF00333066.
The coupling complexity of cortical areas makes it very difficult to analyse them experimentally. Studies of model systems provide the possibility of adapting the analysis to the available data base and elaborating the fundamental properties that depend on the structure of the system. We propose a model system of variable complexity that is spatially two-dimensional and time-dependent, uses feedback for iteration and smoothing, includes the mapping of the cortical networks and can be nonlinear as the case requires. Combining such elementary systems on the basis of neuroanatomical findings enables us to simulate cortical mappings and to interpret neurophysiological data. The decisive factor is that the dynamics of the system and the neuroanatomically based spatial coupling are closely connected with each other.
皮质区域的耦合复杂性使得对其进行实验分析非常困难。模型系统研究提供了根据现有数据库调整分析方法并阐述依赖于系统结构的基本特性的可能性。我们提出了一个具有可变复杂性的模型系统,它在空间上是二维的且与时间相关,利用反馈进行迭代和平滑处理,包含皮质网络的映射,并且根据需要可以是非线性的。基于神经解剖学发现将这些基本系统组合起来,使我们能够模拟皮质映射并解释神经生理学数据。决定性因素在于系统的动力学与基于神经解剖学的空间耦合彼此紧密相连。