Department of Physiology, All India Institute of Medical Sciences , Bhubaneswar, India.
Department of Physiology, All India Institute of Medical Sciences , Rishikesh, India.
Chronobiol Int. 2020 Jun;37(6):845-855. doi: 10.1080/07420528.2020.1731525. Epub 2020 Feb 20.
The autonomic nervous system (ANS) is one of the effector pathways for circadian variation of many physiological parameters. Autonomic tone and airways caliber have been reported to exhibit circadian variation in separate studies. A simultaneous investigation of heart rate variability (HRV) and airway caliber might ascertain how airway caliber is modulated by autonomic tone. This study was planned to identify the variations in airway caliber and autonomic function tone during a 24-hour span. A total of 56 healthy male subjects with almost similar daily routines were studied. Time domain, frequency domain and nonlinear analysis of R-R interval from 5 min electrocardiogram (ECG) was done seven times during the daytime wake span at 3-hour intervals starting at 05:00 h in the morning until 23:00 h in the night. Simultaneously peak expiratory flow rate (PEFR) was determined using a mini Wright's peak flow meter. Rhythmometric analysis was done for PEFR and HRV parameters. Significant circadian variation in low frequency (LF) and high frequency (HF) variance was identified in this group of healthy subjects. The circadian rhythm of LF variance was characterized by a gradual increase and corresponding reciprocal change in HF variance from morning until night. The LF/HF ratio and SD2/SD1 ratio reflecting sympatho-vagal balance showed low to high values from morning to evening. The acrophase of the PEFR temporal pattern is similar to that of LF power and almost opposite in phase to that of HF power. PEFR is positively correlated with LF power. The circadian rhythm of airway caliber co-varies with cardiac autonomic tone. It appears that the temporal pattern of cardiac autonomic tone precedes in time that of airways caliber, thereby suggesting the latter operates under the modulatory effect of the 24-hour pattern in sympatho-vagal balance.
自主神经系统 (ANS) 是许多生理参数的昼夜变化的效应途径之一。在单独的研究中,已经报道了自主神经张力和气道口径呈现昼夜变化。同时研究心率变异性 (HRV) 和气道口径可以确定气道口径如何受自主神经张力的调节。本研究旨在确定 24 小时内气道口径和自主功能张力的变化。研究共纳入了 56 名日常生活几乎相同的健康男性。在白天清醒期间,每 3 小时间隔进行 7 次 5 分钟心电图 (ECG) 的时域、频域和 R-R 间期非线性分析,从早上 05:00 开始直到晚上 23:00。同时使用迷你 Wright 峰流速计测定呼气峰流速 (PEFR)。对 PEFR 和 HRV 参数进行节奏分析。本研究发现,这组健康受试者的低频 (LF) 和高频 (HF) 方差存在显著的昼夜变化。LF 方差的昼夜节律表现为从早上到晚上 LF 方差逐渐增加,而 HF 方差相应地呈反比例变化。反映交感神经-迷走神经平衡的 LF/HF 比值和 SD2/SD1 比值从早上到晚上呈低值到高值变化。PEFR 的时间模式的高峰相位与 LF 功率相似,相位几乎相反,与 HF 功率相反。PEFR 与 LF 功率呈正相关。气道口径的昼夜节律与心脏自主神经张力共同变化。似乎心脏自主神经张力的时间模式先于气道口径的时间模式,这表明后者在 24 小时交感神经-迷走神经平衡模式的调节作用下运行。