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神经元中的电压波动:是信号还是噪声?

Voltage fluctuations in neurons: signal or noise?

机构信息

Department of Neurobiology, Life Science Institute, The Edmond & Liliy Safra Centre for Brain Sciences, Hebrew University, Jerusalem, Israel.

出版信息

Physiol Rev. 2011 Jul;91(3):917-29. doi: 10.1152/physrev.00019.2010.

Abstract

Noise and variability are fundamental companions to ion channels and synapses and thus inescapable elements of brain function. The overriding unresolved issue is to what extent noise distorts and limits signaling on one hand and at the same time constitutes a crucial and fundamental enrichment that allows and facilitates complex adaptive behavior in an unpredictable world. Here we review the growing experimental evidence that functional network activity is associated with intense fluctuations in membrane potential and spike timing. We trace origins and consequences of noise and variability. Finally, we discuss noise-free neuronal signaling and detrimental and beneficial forms of noise in large-scale functional neural networks. Evidence that noise and variability in some cases go hand in hand with behavioral variability and increase behavioral choice, richness, and adaptability opens new avenues for future studies.

摘要

噪声和可变性是离子通道和突触的基本伴随物,因此是大脑功能不可避免的组成部分。一个悬而未决的关键问题是,噪声在多大程度上一方面扭曲和限制了信号,另一方面又构成了一种至关重要的基础丰富性,从而使在不可预测的世界中进行复杂的适应性行为成为可能。在这里,我们回顾了越来越多的实验证据,证明功能网络活动与膜电位和尖峰时间的强烈波动有关。我们追溯了噪声和可变性的起源和后果。最后,我们讨论了在大型功能神经网络中无噪声神经元信号传递以及有害和有益形式的噪声。有证据表明,在某些情况下,噪声和可变性与行为可变性一起增加了行为选择、丰富度和适应性,为未来的研究开辟了新的途径。

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