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Brain Dynamics Promotes Function

机译:脑动力学促进功能

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摘要

Dynamical structure in the brain promotes biological function. Natural scientists look for correlations between measured electrical signals and behavior or mental states. Computational scientists have new opportunities to receive 'algorithmic' inspiration from brain processes and propose computational paradigms. Thus a tradition which dates back to the 1940s with neural nets research is renewed. Real processes in the brain are 'complex' and withstand trivial descriptions. However, dynamical complexity need not be at odds with a computational description of the phenomena and with the inspiration for algorithms that actually compute something in an engineering sense. We engage this complexity from a computational viewpoint, not excluding dynamical regimes that a number of authors are willing to label as chaos. The key question is: what may we be missing computation-wise if we overlook brain dynamics? At this point in brain research, we are happy if we can at least provide a partial answer.
机译:大脑中的动态结构促进了生物学功能。自然科学家寻找测量的电信号和行为或心理状态之间的相关性。计算科学家有新的机会从大脑过程接收“算法”灵感,并提出计算范式。因此,一个传统追溯到20世纪40年代的神经网络研究。大脑中的真实过程是“复杂”并承受琐碎的描述。然而,动态复杂性不需要具有对现象的计算描述,并且具有实际计算工程意义上的某些东西的算法的灵感。我们从计算的角度开始这种复杂性,而不是排除一些作者愿意标记为混乱的动态制度。关键问题是:如果我们忽略脑动力学,我们可能会丢失计算 - 在大脑研究中,我们很高兴如果我们至少提供部分答案。

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