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Anatomical and Topological Foundations of Cognitive Neurodynamics in Cerebral Cortex

机译:大脑皮层认知神经动力学的解剖学和拓扑学基础

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Perception requires action of the body into the environment in search of information that the brain needs to optimize engagement of its body with the world. Actions to achieve maximum grip are implemented in sequential motor command transmitted by the limbic system into the brain stem. Simultaneously preaffer-ence sends efference copies to the sensory cortices that activate landscapes of chaotic attractors, which serve to predict the sensory consequences of the impending actions. The microscopic sensory impact delivers trains of action potentials to the primary sensory areas. The trains select relevant basins of attraction; selected attractors send wave packets into the limbic system, where they are integrated in time and space into a multisensory percept that is re-transmitted to all sensory areas as efference copies. The actionperception cycle is conceived topologically as a helix for predictive hypothesis-testing and knowledge-accrual. The cycle categorizes sensory inputs, which then choose appropriate actions.
机译:知觉要求身体对环境采取行动,以寻找大脑需要的信息,以优化其身体与世界的接触。达到最大抓地力的动作是通过边缘系统传输到脑干的顺序运动命令来执行的。同时,preafference将喜欢的副本发送到感觉皮层,以激活混沌吸引子的景观,从而预测即将发生的动作的感觉后果。微观的感觉冲击将动作电位的训练传递到主要的感觉区域。火车选择相关的吸引力盆地;选定的吸引子将波包发送到边缘系统,在时空系统中将它们整合到一个多感官感知中,并以有效副本的形式重新传输到所有感官区域。动作感知周期在拓扑上被认为是用于预测假设检验和知识积累的螺旋。循环将感觉输入分类,然后选择合适的动作。

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