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运动与疲劳状态下心肌网络的动力学

Dynamics of cardio-muscular networks in exercise and fatigue.

作者信息

Garcia-Retortillo Sergi, Ch Ivanov Plamen

机构信息

Department of Health and Exercise Science, Wake Forest University, Winston-Salem, North Carolina, USA.

Complex Systems in Sport, INEFC University of Barcelona, Barcelona, Spain.

出版信息

J Physiol. 2024 Oct 11. doi: 10.1113/JP286963.

Abstract

A fundamental question in cardiovascular and muscle physiology is how the heart operates in synchrony with distinct muscles to regulate homeostasis, enable movement and adapt to exercise demands and fatigue. Here we investigate how autonomic regulation of cardiac function synchronizes and integrates as a network with the activity of distinct muscles during exercise. Further, we establish how the network of cardio-muscular interactions reorganizes with fatigue. Thirty healthy young adults performed two body weight squat tests until exhaustion. Simultaneous recordings were taken of a 3-lead electrocardiogram (EKG) along with electromyography (EMG) signals from the left and right vastus lateralis, and left and right erector spinae. We first obtained instantaneous heart rate (HR) derived from the EKG signal and decomposed the EMG recordings in 10 frequency bands (F1-F10). We next quantified pair-wise coupling (cross-correlation) between the time series for HR and all EMG spectral power frequency bands in each leg and back muscle. We uncovered the first profiles of cardio-muscular network interactions, which depend on the role muscles play during exercise and muscle fibre histochemical characteristics. Additionally, we observed a significant decline in the degree of cardio-muscular coupling with fatigue, characterized by complex transitions from synchronous to asynchronous behaviour across a range of timescales. The network approach we utilized introduces new avenues for the development of novel network-based markers, with the potential to characterize multilevel cardio-muscular interactions to assess global health, levels of fatigue, fitness status or the effectiveness of cardiovascular and muscle injury rehabilitation programmes. KEY POINTS: The heart operates in synchrony with muscles to regulate homeostasis, enable movement, and adapt to exercise demands and fatigue. However, the precise mechanisms regulating cardio-muscular coupling remain unknown. This study introduces a pioneering approach to assess cardio-muscular network interactions by examining the synchronization of cardiac function with muscle activity during exercise and fatigue. We uncover the first profiles of cardio-muscular interactions characterized by specific hierarchical organization of link strength. We observe a significant decline in the degree of cardio-muscular coupling with fatigue, marked by complex transitions from synchronous to asynchronous behaviour. This network approach offers new network-based markers to characterize multilevel cardio-muscular interactions to assess global health, levels of fatigue, fitness status or the effectiveness of cardiovascular and muscle injury rehabilitation programmes.

摘要

心血管和肌肉生理学中的一个基本问题是,心脏如何与不同的肌肉协同运作,以调节体内平衡、实现运动以及适应运动需求和疲劳。在此,我们研究在运动过程中,心脏功能的自主调节如何作为一个网络与不同肌肉的活动实现同步和整合。此外,我们还确定了心脏 - 肌肉相互作用网络如何随着疲劳而重新组织。30名健康的年轻成年人进行了两次体重深蹲测试,直至筋疲力尽。同时记录了三导联心电图(EKG)以及来自左右外侧股四头肌和左右竖脊肌的肌电图(EMG)信号。我们首先从EKG信号中获取瞬时心率(HR),并将EMG记录分解为10个频段(F1 - F10)。接下来,我们量化了HR时间序列与每条腿和背部肌肉中所有EMG频谱功率频段之间的成对耦合(互相关)。我们揭示了心脏 - 肌肉网络相互作用的首个特征,这些特征取决于肌肉在运动中的作用以及肌肉纤维的组织化学特性。此外,我们观察到随着疲劳,心脏 - 肌肉耦合程度显著下降,其特征是在一系列时间尺度上从同步行为到异步行为的复杂转变。我们采用的网络方法为开发基于网络的新型标志物开辟了新途径,有可能描绘多级心脏 - 肌肉相互作用,以评估整体健康状况、疲劳程度、健康状态或心血管和肌肉损伤康复计划的有效性。要点:心脏与肌肉协同运作以调节体内平衡、实现运动并适应运动需求和疲劳。然而,调节心脏 - 肌肉耦合的精确机制仍然未知。本研究引入了一种开创性方法,通过检查运动和疲劳期间心脏功能与肌肉活动的同步性来评估心脏 - 肌肉网络相互作用。我们揭示了以连接强度的特定层次组织为特征的心脏 - 肌肉相互作用的首个特征。我们观察到随着疲劳,心脏 - 肌肉耦合程度显著下降,其特征是从同步行为到异步行为的复杂转变。这种网络方法提供了基于网络的新型标志物,以描绘多级心脏 - 肌肉相互作用,以评估整体健康状况、疲劳程度、健康状态或心血管和肌肉损伤康复计划的有效性。

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