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思维的组织:功能性脑成像揭示复杂认知的神经结构

The organization of thinking: what functional brain imaging reveals about the neuroarchitecture of complex cognition.

作者信息

Just Marcel Adam, Varma Sashank

机构信息

Department of Psychology, Center for Cognitive Brain Imaging, Carnegie Mellon University, Pittsburgh, Pennsylvania 15213, USA.

出版信息

Cogn Affect Behav Neurosci. 2007 Sep;7(3):153-91. doi: 10.3758/cabn.7.3.153.

Abstract

Recent findings in brain imaging, particularly in fMRI, are beginning to reveal some of the fundamental properties of the organization of the cortical systems that underpin complex cognition. We propose an emerging set of operating principles that govern this organization, characterizing the system as a set of collaborating cortical centers that operate as a large-scale cortical network. Two of the network's critical features are that it is resource constrained and dynamically configured, with resource constraints and demands dynamically shaping the network topology. The operating principles are embodied in a cognitive neuroarchitecture, 4CAPS, consisting of a number of interacting computational centers that correspond to activating cortical areas. Each 4CAPS center is a hybrid production system, possessing both symbolic and connectionist attributes. We describe 4CAPS models of sentence comprehension, spatial problem solving, and complex multitasking and compare the accounts of these models with brain activation and behavioral results. Finally, we compare 4CAPS with other proposed neuroarchitectures.

摘要

近期脑成像研究的成果,尤其是功能磁共振成像(fMRI)的研究成果,正开始揭示支撑复杂认知的皮质系统组织的一些基本特性。我们提出了一组新兴的运作原则来管理这一组织,将该系统描述为一组作为大规模皮质网络运作的协作皮质中心。该网络的两个关键特征是它受到资源限制且动态配置,资源限制和需求动态塑造着网络拓扑结构。这些运作原则体现在一种认知神经架构——4CAPS中,它由一些与激活的皮质区域相对应的相互作用的计算中心组成。每个4CAPS中心都是一个混合产生式系统,兼具符号和联结主义属性。我们描述了句子理解、空间问题解决和复杂多任务处理的4CAPS模型,并将这些模型的解释与脑激活和行为结果进行比较。最后,我们将4CAPS与其他提出的神经架构进行比较。

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