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Computational Biology Research Centre (CBRC), National Institute of Advanced Industrial Science and Technology (AIST), Aomi 2-42, Koto-ku, Tokyo 135-0064, Japan

机译:国立先进产业科学技术研究院(AIST)计算生物学研究中心(CBRC),东京都江东区青见2至42,日本135-0064

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摘要

This survey of experimental findings and theoretical insights of the past 25 years places the brain firmly into the conceptual framework of nonlinear dynamics, operating at the brink of criticality, which is achieved and maintained by self-organization. It is here the basis for proposing that the application of the twin concepts of scaling and universality of the theory of non-equilibrium phase transitions can serve as an informative approach for elucidating the nature of underlying neural-mechanisms, with emphasis on the dynamics of recursively reentrant activity flow in intracortical and cortico-subcortical neuronal loops.
机译:这项对过去25年的实验结果和理论见解的调查将大脑牢牢地置于非线性动力学的概念框架中,处于濒临临界状态,而这种临界状态是通过自组织实现并保持的。这是提出非平衡相变理论的标度和通用性双重概念的应用的基础,可以作为阐明潜在神经机制本质的信息方法,重点在于递归的动力学皮质内和皮质下皮质神经元环中的折返活动流。

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