Detection of respiratory frequency rhythm in human alpha phase shifts: topographic distributions in wake and drowsy states.

IF 3.2 3区 医学 Q2 PHYSIOLOGY
Frontiers in Physiology Pub Date : 2025-01-06 eCollection Date: 2024-01-01 DOI:10.3389/fphys.2024.1511998
Aleksandar Kalauzi, Zoran Matić, Edin Suljovrujić, Tijana Bojić
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引用次数: 0

Abstract

Introduction: The relationship between brain activity and respiration is recently attracting increasing attention, despite being studied for a long time. Respiratory modulation was evidenced in both single-cell activity and field potentials. Among EEG and intracranial measurements, the effect of respiration was prevailingly studied on amplitude/power in all frequency bands.

Methods: Since phases of EEG oscillations received less attention, we applied our previously published carrier frequency (CF) mathematical model of human alpha oscillations on a group of 10 young healthy participants in wake and drowsy states, using a 14-channel average reference montage. Since our approach allows for a more precise calculation of CF phase shifts (CFPS) than any individual Fourier component, by using a 2-s moving Fourier window, we validated the new method and studied, for the first time, temporal waveforms CFPS(t) and their oscillatory content through FFT (CFPS(t)).

Results: Although not appearing equally in all channel pairs and every subject, a clear peak in the respiratory frequency region, 0.21-0.26 Hz, was observed (max at 0.22 Hz). When five channel pairs with the most prominent group averaged amplitudes at 0.22 Hz were plotted in both states, topographic distributions changed significantly-from longitudinal, connecting frontal and posterior channels in the wake state to topographically split two separate regions-frontal and posterior in the drowsy state. In addition, in the drowsy state, 0.22-Hz amplitudes decreased for all pairs, while statistically significant reduction was obtained for 20/91 (22%) pairs.

Discussion: These results potentially evidence, for the first time, the respiratory frequency modulation of alpha phase shifts, as well as the significant impact of wakeful consciousness on the observed oscillations.

人类α相移时呼吸频率节律的检测:清醒和困倦状态下的地形分布。
大脑活动和呼吸之间的关系虽然已经被研究了很长时间,但最近越来越受到人们的关注。呼吸调节在单细胞活动和场电位中均得到证实。在脑电图和颅内测量中,呼吸对所有频带振幅/功率的影响被普遍研究。方法:由于脑电图振荡的相位受到的关注较少,我们将之前发表的人类α振荡的载波频率(CF)数学模型应用于10名处于清醒和困睡状态的年轻健康参与者,使用14通道平均参考蒙太奇。由于我们的方法允许比任何单个傅立叶分量更精确地计算CF相移(CFPS),通过使用2-s移动傅立叶窗口,我们验证了新方法,并首次通过FFT研究了时间波形CFPS(t)及其振荡内容(CFPS(t))。结果:虽然在所有通道对和每个受试者中出现的频率不相同,但在呼吸频率区域(0.21-0.26 Hz)观察到一个明显的峰值(最大在0.22 Hz)。当在两种状态下绘制出平均振幅为0.22 Hz的最显著组的五个通道对时,地形分布发生了显著变化——从尾流状态时连接前额和后部的纵向通道,到昏昏欲睡状态时地形上分裂为两个独立的区域——前额和后部。此外,在困倦状态下,所有配对的0.22 hz振幅均下降,其中20/91(22%)对的振幅下降具有统计学意义。讨论:这些结果首次潜在地证明了呼吸频率调制的α相移,以及清醒意识对观察到的振荡的重大影响。
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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来源期刊
CiteScore
6.50
自引率
5.00%
发文量
2608
审稿时长
14 weeks
期刊介绍: Frontiers in Physiology is a leading journal in its field, publishing rigorously peer-reviewed research on the physiology of living systems, from the subcellular and molecular domains to the intact organism, and its interaction with the environment. Field Chief Editor George E. Billman at the Ohio State University Columbus is supported by an outstanding Editorial Board of international researchers. This multidisciplinary open-access journal is at the forefront of disseminating and communicating scientific knowledge and impactful discoveries to researchers, academics, clinicians and the public worldwide.
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