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肌电活动和摄氧量慢成分在大强度和极量运动中的小波和主成分分析。

Wavelet and principal component analysis of electromyographic activity and slow component of oxygen uptake during heavy and severe cycling exercise.

机构信息

School of Biomedical Engineering, Dalian University of Technology, Dalian 116024, Liaoning, China.

Faculty of Physical Education, Dalian University of Technology, Dalian 116024, Liaoning, China.

出版信息

Appl Physiol Nutr Metab. 2020 Feb;45(2):187-192. doi: 10.1139/apnm-2019-0037. Epub 2019 Jul 9.

Abstract

The aim of the study was to investigate whether the slow component of oxygen uptake was concurrent with the recruitment of large α-motoneuron muscle fibres by using wavelet and principal component analysis (PCA) of electromyography (EMG) during heavy and severe cycling exercise. Eleven male subjects participated in the study. After establishing each subject's maximum value of oxygen uptake through an incremental test on the cycle ergometer, the subjects performed 6-min cycling tests at heavy and severe intensity. EMG signals were collected from rectus femoris, biceps femoris long head, tibialis anterior, and medial gastrocnemius and processed by combined use of wavelet and PCA analysis. The time delays to the onset of slow component occurred significantly earlier during severe (105.22 ± 5.45 s) compared with during heavy (138.78 ± 15.09 s) exercise. ANOVA with repeated measures showed that for all muscles tested, the angle θ formed by the first and second principal components decreased significantly between time windows during heavy and severe exercise. However, significant increases of EMG mean power frequency (MPF) were found only during heavy exercise. Our results show the concurrence of the oxygen uptake slow component with the additional recruitment of muscle fibres, presumably less efficient large α-motoneuron fibres. The expected rise in MPF may be offset by muscle fatigue occurring in the later time windows of the slow component during severe exercise. The gradual shift to higher EMG frequencies throughout the slow-component phase was reflected in the progressive and significant decrease of angle θ.

摘要

本研究旨在探讨在剧烈和重度自行车运动中,肌电图(EMG)的小波和主成分分析(PCA)是否可以同时募集大型α运动神经元纤维。11 名男性受试者参与了这项研究。在通过递增式自行车测力计测试确定每位受试者的最大摄氧量后,受试者进行了 6 分钟的重度和重度强度的自行车测试。从股直肌、股二头肌长头、胫骨前肌和内侧腓肠肌采集 EMG 信号,并结合小波和 PCA 分析进行处理。在重度(105.22±5.45s)运动中,与在重度(138.78±15.09s)运动中相比,慢成分的起始时间延迟明显更早。重复测量方差分析显示,对于所有测试的肌肉,在重度和重度运动之间的时间窗口中,第一和第二主成分之间形成的角度θ显著减小。然而,仅在重度运动中发现 EMG 平均功率频率(MPF)显著增加。我们的结果表明,摄氧量慢成分与额外募集的肌肉纤维同时发生,可能是效率较低的大型α运动神经元纤维。在剧烈运动的慢成分的后期时间窗口中,肌肉疲劳可能会抵消预期的 MPF 升高。在慢成分阶段,EMG 频率逐渐升高,反映在角度θ的逐渐显著降低。

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