Hutcheon B, Yarom Y
Institute for Biological Science, National Research Council of Canada, Ottawa, Canada K1A 0R6.
Trends Neurosci. 2000 May;23(5):216-22. doi: 10.1016/s0166-2236(00)01547-2.
The realization that different behavioural and perceptual states of the brain are associated with different brain rhythms has sparked growing interest in the oscillatory behaviours of neurons. Recent research has uncovered a close association between electrical oscillations and resonance in neurons. Resonance is an easily measurable property that describes the ability of neurons to respond selectively to inputs at preferred frequencies. A variety of ionic mechanisms support resonance and oscillation in neurons. Understanding the basic principles involved in the production of resonance allows for a simplified classification of these mechanisms. The characterization of resonance and frequency preference captures those essential properties of neurons that can serve as a substrate for coordinating network activity around a particular frequency in the brain.
大脑不同的行为和感知状态与不同的脑节律相关联,这一认识引发了人们对神经元振荡行为日益浓厚的兴趣。最近的研究发现了神经元中电振荡与共振之间的紧密联系。共振是一种易于测量的特性,它描述了神经元对特定频率输入进行选择性响应的能力。多种离子机制支持神经元中的共振和振荡。理解共振产生所涉及的基本原理有助于对这些机制进行简化分类。共振和频率偏好的特征描述捕捉了神经元的那些基本特性,这些特性可作为在大脑中围绕特定频率协调网络活动的基础。