Fishberg Department of Neuroscience, Mount Sinai School of Medicine, New York, NY, USA.
Philos Trans R Soc Lond B Biol Sci. 2010 Aug 12;365(1551):2363-74. doi: 10.1098/rstb.2010.0105.
During the computations performed by the nervous system, its 'wiring diagram'--the map of its neurons and synaptic connections--is dynamically modified and supplemented by multiple actions of neuromodulators that can be so complex that they can be thought of as constituting a biochemical network that combines with the neuronal network to perform the computation. Thus, the neuronal wiring diagram alone is not sufficient to specify, and permit us to understand, the computation that underlies behaviour. Here I review how such modulatory networks operate, the problems that their existence poses for the experimental study and conceptual understanding of the computations performed by the nervous system, and how these problems may perhaps be solved and the computations understood by considering the structural and functional 'logic' of the modulatory networks.
在神经系统进行计算的过程中,其“接线图”——神经元和突触连接的图谱——会被多种神经调质的作用动态地修改和补充,这些作用可能非常复杂,可以被认为构成了一个生化网络,与神经元网络相结合来进行计算。因此,仅神经元接线图本身不足以指定和允许我们理解行为背后的计算。在这里,我回顾了这些调节网络是如何运作的,它们的存在给神经系统计算的实验研究和概念理解带来了哪些问题,以及通过考虑调节网络的结构和功能“逻辑”,如何解决这些问题并理解计算。