12-14岁男孩重复性等长自愿收缩时肌肉疲劳的肌电表现评估

Q2 Social Sciences Teoria ta Metodika Fizicnogo Vihovanna Pub Date : 2021-03-25 DOI:10.17309/TMFV.2021.1.07
Abir Samanta, S. Mukherjee
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引用次数: 1

摘要

目的:研究青春期男孩重复性自主等长疲劳收缩时不同表面肌电信号特征交替的特点。材料和方法。12例,身高148.75±10 cm;质量38.9±7.9 kg;年龄- 12至14岁。分析了疲劳平板支撑时外斜肌、腹直肌、竖脊肌肌电信号的变化。使用单独的单向重复测量方差分析来检验任务时间和整体核心肌的肌电参数在疲劳平板测试前、中、后的统计学意义。Shapiro-Wilk p < 0.05,采用单因素Friedman方差分析。对疲劳前和疲劳后的振幅均值和标准差进行Pearson积矩相关系数和双变量线性回归分析。计算了疲劳前和疲劳后振幅与耐力时间的Spearman相关系数。结果。除竖脊肌外,所有肌肉的振幅校正平均值均升高(p < 0.05),振幅标准差和总频谱功率均显著升高(p < 0.05)。竖脊肌归一化低频功率变化显著(p = 0.05)。观察到激动剂/协同剂(p = 0.02)和激动剂/拮抗剂肌肉的归一化低频有显著变化(p = 0.05)。除竖脊肌外,在疲劳前和疲劳后,平均振幅值与振幅变异性呈显著的正线性关系。任务失败时间与表面肌电信号幅值无相关性(p < 0.05)。结论。肌电波幅的增加主要是由于肌肉疲劳时额外运动单位的快速募集和速率编码。传导速度的降低会影响谱功率,使谱向低频偏移。增加变异性,在疲劳收缩时激动剂/拮抗剂的共同作用可能延长保持时间。体位性疲劳任务/平板支撑通过涉及多个关节和肌肉来增加多关节关节功能,增加协同肌作用的可变性。这一因素为持久时间和肌电信号振幅变化之间缺乏关系提供了直观的解释。
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Assessment of Myoelectric Manifestations of Muscle Fatigue During Repetitive Isometric Voluntary Contraction in Boys Aged 12-14
Aim: To study the peculiarity of electromyography signal characteristics alternation using different sEMG parameters during repetitive voluntary isometric fatiguing contraction in adolescent boys.  Materials and methods. 12 subjects with height 148.75 ± 10 cm; Mass 38.9 ± 7.9 kg; age – 12 to 14 years were recruited. The sEMG signal alteration of external oblique, rectus abdominis, erector spinae muscles during a fatiguing plank were analyzed. A separate one-way repeated measures ANOVA was used to test the statistical significance of task time and electromyography parameters of the global core muscle in the pre-, during- and post-fatigue plank test. One-way Friedman ANOVA was applied for Shapiro-Wilk p < 0.05. The Pearson product-moment correlation coefficient with bivariate linear regressions analysis was performed between the pre-pre fatigue and post-post fatigue amplitude mean and standard deviation values. The Spearman correlation coefficient between amplitude and endurance time both in the pre- and post-fatigue state was conducted.  Results. The mean value of rectified amplitude increased (p < 0.05) for all muscles, the standard deviation of amplitude and total spectral power increased significantly (p < 0.05) for all muscles except the erector spinae muscle (p > 0.05). The power at normalized low frequency significantly changed (p = 0.05) in the erector spinae muscle. A significant change in normalized low frequency for agonist/synergist (p = 0.02) and agonist/antagonist muscles (p = 0.05) was observed. The average amplitude value had a significant positive and linear relationship with the amplitude variability both in the pre- to post-fatigue state, except the erector spinae muscle. The time to task failure was not correlated (p > 0.05) with the sEMG amplitude.  Conclusions. Increased sEMG amplitude resulted mainly from rapid additional motor unit recruitment and rate coding during muscle fatigue. The reduction of conduction velocity might affect the spectral power with a spectral shift towards low-frequency. Increased variability, agonist/antagonist co-activity during fatiguing contraction might extend the holding time. The postural fatiguing task/plank increases multiarticular joint function by involving several joints and muscles, increases variability in the contribution of synergist muscles. This factor provides an intuitive explanation about the absence of a relationship between endurance time and sEMG amplitude changes.
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来源期刊
Teoria ta Metodika Fizicnogo Vihovanna
Teoria ta Metodika Fizicnogo Vihovanna Health Professions-Physical Therapy, Sports Therapy and Rehabilitation
CiteScore
2.20
自引率
0.00%
发文量
63
审稿时长
15 weeks
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