A chaotic systems analysis of the nasal cycle

Michael Winkler, Allan Combs, Colin Daley
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引用次数: 10

Abstract

The nasal cycle is a chaotic ultradian rhythm with a period ranging from about 75 to 200 minutes. It has been shown to correlate highly with EEG amplitude in the contralateral hemisphere at virtually all frequencies, suggesting a connection between this rhythm and laterality of brain function. During a three-week period, five participants estimated airflow from both nostrils every 30 minutes during waking hours. Estimates were recorded on Likert scales and analyzed in three distinct phases: (1) reconstructing two-dimensional attractors by lagging and embedding; (2) computing Fourier frequency analyses; and (3) estimating fractal dimensions. Attractor reconstructions demonstrate noticeable order when compared to Monte Carlo reconstructions of the same data sets, and dimension estimates are in the fractal range. The attractor reconstructions, in combination with the frequency analyses, show distinct individual differences in the structure of the nasal cycle. The advantages of chaotic systems analyses over traditional behavioral statistics are discussed.

鼻循环的混沌系统分析
鼻循环是一种混乱的超昼夜节律,周期约为75至200分钟。它已被证明与对侧半球几乎所有频率的脑电图振幅高度相关,表明这种节律与大脑功能的偏侧性之间存在联系。在为期三周的时间里,五名参与者在醒着的时候每30分钟估计一次两个鼻孔的气流。在李克特尺度上记录估计值,并分三个阶段进行分析:(1)通过滞后和嵌入重构二维吸引子;(2)计算傅里叶频率分析;(3)分形维数估计。与相同数据集的蒙特卡罗重建相比,吸引子重建显示出明显的顺序,并且维数估计在分形范围内。吸引子重建,结合频率分析,显示了鼻循环结构的明显个体差异。讨论了混沌系统分析相对于传统行为统计的优点。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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