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成年人在运动期间和运动后对自主神经系统活动的影响:一项荟萃回归研究和试验序贯分析。

The Impact on Autonomic Nervous System Activity during and Following Exercise in Adults: A Meta-Regression Study and Trial Sequential Analysis.

机构信息

Department of Family Medicine, Dalin Tzu Chi Hospital, Buddhist Tzu Chi Medical Foundation, No. 2, Minsheng Road, Dalin, Chiayi 622, Taiwan.

Nature Dental Clinic, Puli Township, Nantou 545, Taiwan.

出版信息

Medicina (Kaunas). 2024 Jul 28;60(8):1223. doi: 10.3390/medicina60081223.

Abstract

: Exercise enhances cardiovascular health through various mechanisms, including the modulation of autonomic nervous system activity. This study aimed to systematically examine the impact of exercise on heart rate variability (HRV) in adults during and within one hour after exercise (WHAE). : A comprehensive literature review was conducted using the MEDLINE, Embase, Cochrane Library, Scopus, and PubMed databases to identify published studies that reported the impact of exercise on autonomic nervous system activity in adults. The studies measured the absolute power of the low-frequency band (0.04-0.15 Hz) to the absolute power of the high-frequency band (0.015-0.4 Hz) (LF/HF ratio) to assess sympathetic activity and the root mean square of successive differences between normal heartbeats (RMSSD) to assess parasympathetic activity. : A total of 3329 studies were screened for relevance, and finally, 10 articles that utilized methods for measuring autonomic nervous system activity, such as the LF/HF ratio and RMSSD, covering 292 adult patients, were included for meta-analysis. In the current meta-analysis, we observed a significant decrease in parasympathetic activity during and after exercise, as indicated by RMSSD, compared to pre-exercise levels (mean difference [MD] = -4.96, 95% confidence interval [CI]: -8.00 to -1.91, = 0.003). However, sympathetic activity after exercise, represented by the LF/HF ratio, showed a borderline significant increase compared to pre-exercise levels (MD = 1.06, 95% CI: -0.01 to 2.12, = 0.052). The meta-regression model found that factors associated with RMSSD included mean age, male gender, and duration post-exercise. Additionally, the factor associated with the LF/HF ratio was the healthy condition of participants. The trial sequential analysis provided robust evidence of a decrease in RMSSD and an increase in the LF/HF ratio during and WHAE. : Given the limitations of the current study, the findings suggest that a significant decrease in parasympathetic activity and a borderline significant increase in sympathetic activity in adults during and WHAE, as confirmed by trial sequential analysis. Meta-regression analysis indicated that parasympathetic activity was negatively associated with participant age and male gender, but positively associated with duration post-exercise. Additionally, increased sympathetic activity was linked to the healthy conditions of participants. This study suggests that exercise might differentially affect autonomic balance in individuals with chronic conditions compared to healthy individuals. This highlights the potential need for tailored exercise interventions to improve autonomic function across different populations.

摘要

运动通过调节自主神经系统活动等多种机制来促进心血管健康。本研究旨在系统地考察运动对成年人运动期间和运动后 1 小时内(WHAE)心率变异性(HRV)的影响。

我们使用 MEDLINE、Embase、Cochrane 图书馆、Scopus 和 PubMed 数据库进行了全面的文献综述,以确定报告运动对成年人自主神经系统活动影响的已发表研究。这些研究通过测量低频带(0.04-0.15 Hz)和高频带(0.015-0.4 Hz)的绝对功率(LF/HF 比值)来评估交感神经活动,通过正常心跳之间的均方根差(RMSSD)来评估副交感神经活动。

共筛选了 3329 项研究以确定相关性,最终纳入了 10 项使用 LF/HF 比值和 RMSSD 等方法测量自主神经系统活动的文章,共涉及 292 名成年患者,进行荟萃分析。在本次荟萃分析中,我们观察到与运动前水平相比,RMSSD 指示的运动期间和运动后副交感神经活动显著降低(平均差异 [MD] = -4.96,95%置信区间 [CI]:-8.00 至 -1.91, = 0.003)。然而,运动后交感神经活动,用 LF/HF 比值表示,与运动前水平相比呈边缘显著增加(MD = 1.06,95%CI:-0.01 至 2.12, = 0.052)。荟萃回归模型发现,与 RMSSD 相关的因素包括平均年龄、男性性别和运动后时间。此外,与 LF/HF 比值相关的因素是参与者的健康状况。试验序贯分析提供了强有力的证据,表明 RMSSD 在运动期间和 WHAE 期间以及 LF/HF 比值增加。

鉴于目前研究的局限性,研究结果表明,通过试验序贯分析证实,成年人在运动期间和 WHAE 期间副交感神经活动显著降低,交感神经活动呈边缘显著增加。荟萃回归分析表明,副交感神经活动与参与者年龄和性别呈负相关,与运动后时间呈正相关。此外,交感神经活动增加与参与者的健康状况有关。这项研究表明,与健康个体相比,运动可能会对慢性疾病患者的自主平衡产生不同的影响。这突出表明,需要针对不同人群制定有针对性的运动干预措施来改善自主功能。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f3bd/11356649/70004ee0edab/medicina-60-01223-g001.jpg

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