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Analysing the effect of wearable lift-assist vest in squat lifting task using back muscle EMG data and musculoskeletal model

机译:用背部肌肉EMG数据和肌肉骨骼模型分析可穿戴升降辅助背心的施工辅助背心的效果

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The most common disorders of the musculoskeletal system are low back disorders. They cause significant direct and indirect costs to different societies especially in lifting occupations. To reduce the risk of low back disorders, mechanical lifting aids have been used to decrease low back muscle forces. But there are very few direct ways to calculate muscle forces and examine the effect of personal lift-assist devices, so biomechanical models ought to be used to examine the quality of these devices for assisting back muscles in lifting tasks. The purpose of this study is to examine the effect of a designed wearable lift-assist vest (WLAV) in the reduction of erector spinae muscle forces during symmetric squat lifting tasks. Two techniques of muscle calculation were used, the electromyography-based method and the optimization-based model. The first uses electromyography data of erector spinae muscles and its linear relationship with muscle force to estimate their forces, and the second uses a developed musculoskeletal model to calculate back muscle forces using an optimization-based method. The results show that these techniques reduce the average value of erector spinae muscle forces by 45.38 (+/- 4.80) % and 42.03 (+/- 8.24) % respectively. Also, both methods indicated approximately the same behaviour in changing muscle forces during 10 to 60 degrees of trunk flexion using WLAV. The use of WLAV can help to reduce the activity of low back muscles in lifting tasks by transferring the external load effect to the assistive spring system utilized in it, so this device may help people lift for longer.
机译:肌肉骨骼系统的最常见疾病是低背障碍。它们对不同的社会造成显着的直接和间接成本,特别是在提升职业中。为了降低低背障碍的风险,机械升降助剂已被用来降低低背肌肉力。但是,肌肉力量的直接方法很少,并检查个人提升辅助装置的效果,因此生物力学模型应该用于检查这些装置的质量,以帮助升降肌肉在提升任务中。本研究的目的是检查设计的可穿戴升降辅助背心(WLAV)在对称蹲下升降任务期间侵入型尖肌肌力的减少的影响。使用了两种肌肉计算技术,基于肌科的方法和基于优化的模型。首先使用射击型肌肉肌肉的肌电图数据及其线性关系与肌肉力来估计其力量,第二种使用开发的肌肉骨骼模型使用基于优化的方法计算背部肌肉力。结果表明,这些技术将射击型脊柱肌力的平均值降低45.38(+/- 4.80)%和42.03(+/- 8.24)%。而且,两种方法在使用WLAV期间,两种方法在10到60度的树干屈曲期间改变肌肉力大致相同的行为。 WLAV的使用可以通过将外部负荷效应转移到其中的辅助弹簧系统将外部负荷效应转移到提升任务中,从而降低升降肌的活动,因此该装置可以帮助人们升高。

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