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The hodgkin-huxley heritage: From channels to circuits

机译:霍奇金·赫x黎传承:从渠道到赛道

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摘要

The Hodgkin-Huxley studies of the action potential, published 60 years ago, are a central pillar of modern neuroscience research, ranging from molecular investigations of the structural basis of ion channel function to the computational implications at circuit level. In this Symposium Review, we aim to demonstrate the ongoing impact of Hodgkin's and Huxley's ideas. The Hodgkin-Huxley model established a framework in which to describe the structural and functional properties of ion channels, including the mechanisms of ion permeation, selectivity, and gating. At a cellular level, the model is used to understand the conditions that control both the rate and timing of action potentials, essential for neural encoding of information. Finally, the Hodgkin-Huxley formalism is central to computational neuroscience to understand both neuronal integration and circuit level information processing, and how these mechanisms might have evolved to minimize energy cost.
机译:霍奇金-赫克斯利(Hodgkin-Huxley)于60年前发表的动作电位研究是现代神经科学研究的中心支柱,其范围从对离子通道功能结构基础的分子研究到电路水平的计算意义。在本次研讨会回顾中,我们旨在证明霍奇金和赫x黎的思想的持续影响。 Hodgkin-Huxley模型建立了一个框架,用于描述离子通道的结构和功能特性,包括离子渗透,选择性和门控的机制。在细胞水平上,该模型用于了解控制动作电位的速率和时间的条件,这对于信息的神经编码至关重要。最后,霍奇金-赫克斯利(Hodgkin-Huxley)形式主义对于理解神经元集成和电路级信息处理以及这些机制如何发展以最小化能源成本的理解对于计算神经科学至关重要。

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