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认知功能的神经元模型。

Neuronal models of cognitive functions.

作者信息

Changeux J P, Dehaene S

出版信息

Cognition. 1989 Nov;33(1-2):63-109. doi: 10.1016/0010-0277(89)90006-1.

Abstract

Understanding the neural bases of cognition has become a scientifically tractable problem, and neurally plausible models are proposed to establish a causal link between biological structure and cognitive function. To this end, levels of organization have to be defined within the functional architecture of neuronal systems. Transitions from any one of these interacting levels to the next are viewed in an evolutionary perspective. They are assumed to involve: (1) the production of multiple transient variations and (2) the selection of some of them by higher levels via the interaction with the outside world. The time-scale of these "evolutions" is expected to differ from one level to the other. In the course of development and in the adult this internal evolution is epigenetic and does not require alteration of the structure of the genome. A selective stabilization (and elimination) of synaptic connections by spontaneous and/or evoked activity in developing neuronal networks is postulated to contribute to the shaping of the adult connectivity within an envelope of genetically encoded forms. At a higher level, models of mental representations, as states of activity of defined populations of neurons, are discussed in terms of statistical physics, and their storage is viewed as a process of selection among variable and transient pre-representations. Theoretical models illustrate that cognitive functions such as short-term memory and handling of temporal sequences may be constrained by "microscopic" physical parameters. Finally, speculations are offered about plausible neuronal models and selectionist implementations of intentions.

摘要

理解认知的神经基础已成为一个科学上易于处理的问题,人们提出了具有神经合理性的模型,以在生物结构和认知功能之间建立因果联系。为此,必须在神经元系统的功能架构内定义组织层次。从这些相互作用的层次中的任何一个层次到下一个层次的转变,都要从进化的角度来看待。它们被认为涉及:(1)产生多种瞬时变异,以及(2)更高层次通过与外部世界的相互作用对其中一些变异进行选择。这些“进化”的时间尺度预计在不同层次之间会有所不同。在发育过程中和成年期,这种内部进化是表观遗传的,不需要改变基因组的结构。据推测,发育中的神经网络中自发和/或诱发活动对突触连接的选择性稳定(和消除)有助于在遗传编码形式的范围内塑造成年期的连接性。在更高层次上,作为特定神经元群体活动状态的心理表征模型,从统计物理学的角度进行了讨论,其存储被视为一个在可变和瞬时预表征中进行选择的过程。理论模型表明,诸如短期记忆和时间序列处理等认知功能可能受到“微观”物理参数的限制。最后,对合理的神经元模型和意图的选择主义实现进行了推测。

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