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Energy efficiency in a channel model for the spiking axon

机译:刺突轴突的通道模型中的能效

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摘要

We examine the spiking axon as a communication channel. We develop a first principles channel model that encompasses the noise in the axon, which manifests itself as spike jitter, and the power consumption, which arises from the activity of the Na~+-K~+ pump. This model enables us to examine the trade-off between the information rate and power consumption. Using parameters from the frog myelinated axon, we determine the spike rate that corresponds to the maximum energy efficiency. This spike rate is consistent with experimental observations, which suggests that neural communication may have developed to maximize energy efficiency rather than information rate alone.
机译:我们将突突轴突视作一种沟通渠道。我们开发了第一个基本通道模型,该模型包含轴突中的噪声(其本身表现为尖峰抖动)和功耗(其由Na〜+ -K〜+泵的活动引起)。该模型使我们能够检查信息速率和功耗之间的权衡。使用青蛙有髓轴突的参数,我们确定与最大能量效率相对应的尖峰速率。此峰值速率与实验观察结果一致,这表明神经沟通可能已发展为最大化能量效率,而不是仅靠信息速率。

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