首页> 外文期刊>Journal of electromyography and kinesiology: Official journal of the International Society of Electrophysiological Kinesiology >The relationship between flexibility and EMG activity pattern of the erector spinae muscles during trunk flexion-extension
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The relationship between flexibility and EMG activity pattern of the erector spinae muscles during trunk flexion-extension

机译:躯干屈伸过程中竖脊肌的柔韧性与肌电活动模式的关系

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Background: Movements in the lumbar spine, including flexion and extension are governed by a complex neuromuscular system involving both active and passive units. Several biomechanical and clinical studies have shown the myoelectric activity reduction of the lumbar extensor muscles (flexion-relaxation phenomenon) during lumbar flexion from the upright standing posture. The relationship between flexibility and EMG activity pattern of the erector spinae during dynamic trunk flexion-extension task has not yet been completely discovered. Objective: The purpose of this study was to investigate the relationship between general and lumbar spine flexibility and EMG activity pattern of the erector spinae during the trunk flexion-extension task. Methods: Thirty healthy female college students were recruited in this study. General and lumbar spine flexibilities were measured by toe-touch and modified schober tests, respectively. During trunk flexion-extension, the surface electromyography (EMG) from the lumbar erector spinae muscles as well as flexion angles of the trunk, hip, lumbar spine and lumbar curvature were simultaneously recorded using a digital camera. The angle at which muscle activity diminished during flexion and initiated during extension was determined and subjected to linear regression analysis to detect the relationship between flexibility and EMG activity pattern of the erector spinae during trunk flexion-extension. Results: During flexion, the erector spinae muscles in individuals with higher toe-touch scores were relaxed in larger trunk and hip angles and reactivated earlier during extension according to these angles (P < 0.001) while in individuals with higher modified schober scores this muscle group was relaxed later and reactivated sooner in accordance with lumbar angle and curvature (P < 0.05). Toe-touch test were significantly correlated with trunk and hip angles while modified schober test showed a significant correlation with lumbar angle and curvature variables. Conclusion: The findings of this study indicate that flexibility plays an important role in trunk muscular recruitment pattern and the strategy of the CNS to provide stability. The results reinforce the possible role of flexibility alterations as a contributing factor to the motor control impairments. This study also shows that flexibility changes behavior is not unique among different regions of the body.
机译:背景:腰椎的运动(包括屈伸)由涉及主动和被动单元的复杂神经肌肉系统控制。几项生物力学和临床研究表明,在以直立站立姿势屈曲腰部的过程中,腰部伸肌的肌电活动降低(屈曲松弛现象)。还没有完全发现动态躯干屈伸任务中竖脊肌的柔韧性和肌电活动模式之间的关系。目的:本研究的目的是研究躯干屈伸任务中一般和腰椎柔韧性与竖脊肌肌电活动模式之间的关系。方法:招募了30名健康的女大学生。总体和腰椎柔韧性分别通过脚趾触觉和改良的肖伯测试进行测量。在躯干屈伸过程中,使用数码相机同时记录了腰直肌脊柱肌肉的表面肌电图(EMG)以及躯干,臀部,腰椎和腰弯的屈曲角度。确定在屈曲过程中肌肉活动减少并在伸展过程中开始的角度,并进行线性回归分析,以检测躯干屈伸过程中竖脊肌的柔韧性和EMG活动模式之间的关系。结果:在屈曲过程中,脚趾触感得分较高的人的竖脊肌在较大的躯干和髋部角度中得到放松,并在伸展过程中根据这些角度而较早地重新激活(P <0.001),而在肖氏评分较高的个体中,该肌肉群后来放松,并根据腰椎角度和弯曲度重新激活(P <0.05)。脚趾触觉测试与躯干和髋部角度显着相关,而改良的肖伯测试显示与腰部角度和曲率变量显着相关。结论:这项研究的结果表明,柔韧性在躯干肌肉募集模式和中枢神经系统提供稳定性的策略中起着重要作用。结果增强了灵活性改变作为运动控制障碍的一个可能因素的可能作用。这项研究还表明,柔韧性改变行为在身体不同部位之间并不是唯一的。

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