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首页> 外文期刊>Journal of Biomechanics >Trunk musculoskeletal response in maximum voluntary exertions: A combined measurement-modeling investigation
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Trunk musculoskeletal response in maximum voluntary exertions: A combined measurement-modeling investigation

机译:最大自愿锻炼中的躯干肌肉骨骼反应:综合测量建模调查

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摘要

Maximum voluntary exertion (MVE) tasks quantify trunk strength and maximal muscle electromyography (EMG) activities with both clinical and biomechanical implications. The aims here are to evaluate the performance of an existing trunk musculoskeletal model, estimate maximum muscle stresses and spinal forces, and explore likely differences between males and females in maximum voluntary exertions. We, therefore, measured trunk strength and EMG activities of 19 healthy right-handed subjects (9 females and 10 males) in flexion, extension, lateral and axial directions. MVEs for all subjects were then simulated in a subject-specific trunk musculoskeletal model, and estimated muscle activities were compared with EMGs. Analysis of variance was used to compare measured moments and estimated spinal loads at the L5-S1 level between females and males. MVE moments in both sexes were greatest in extension (means of 236 Nm in males and 190 Nm in females) and least in left axial torque (97 Nm in males and 64 Nm in females). Being much greater in lateral and axial MVEs, coupled moments reached similar to 50% of primary moments in average. Females exerted less moments in all directions reaching significance except in flexion. Muscle activity estimations were strongly correlated with measurements in flexion and extension (Pearson's r = 0.69 and 0.76), but the correlations were very weak in lateral and axial MVEs (Pearson's r = 0.27 and 0.13). Maximum muscle stress was in average 0.80 +/- 0.42 MPa but varied among muscles from 0.40 +/- 0.22 MPa in rectus abdominis to 0.99 +/- 0.29 MPa in external oblique. To estimate maximum muscle stresses and evaluate validity of a musculoskeletal model, MVEs in all directions with all coupled moments should be considered. (C) 2017 Elsevier Ltd. All rights reserved.
机译:最大自愿劳累(MVE)任务量化临床和生物力学意义的躯干强度和最大肌肉电影学(EMG)活动。这里的目的是评估现有干肌骨骼模型的性能,估计最大肌肉应力和脊柱力,并且在最大的自愿劳动中探索男性和女性之间的可能差异。因此,我们在屈曲,延伸,横向和轴向上测量了19个健康的右手受试者(9名女性和10个男性)的中继强度和EMG活动。然后将所有受试者的MVES模拟在特异性主题中继肌肉骨骼模型中,并将估计的肌肉活动与EMGS进行比较。方差分析用于将测量的矩和估计的脊柱载荷与女性和雄性之间的L5-S1水平进行比较。两性的MVE瞬间在延伸中最大(男性236纳米和女性190nm),至少在左轴向扭矩(97nm,在男性中为64nm)。横向和轴向MVES更大,耦合时刻平均达到初级时刻的50%。除屈曲外,女性在所有方向上都施加了较少的时刻。肌肉活动估计与屈曲和延伸的测量强烈相关(Pearson的R = 0.69和0.76),但横向和轴向MVES的相关性非常弱(Pearson的R = 0.27和0.13)。最大肌肉胁迫平均为0.80 +/- 0.42MPa,但在肌肉腹部0.40 +/- 0.22MPa的肌肉中变化为0.99 +/- 0.29MPa,外倾斜。为了估计最大肌肉应力并评估肌肉骨骼模型的有效性,应考虑所有耦合时刻的所有方向的MVE。 (c)2017 Elsevier Ltd.保留所有权利。

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