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Total trunk muscle force and spinal compression are lower in asymmetric moments as compared to pure extension moments.

机译:与纯伸展力矩相比,在不对称力矩下总躯干肌力和脊柱压缩力更低。

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摘要

The aim of the present study was to test the assumption that asymmetric trunk loading requires a higher total muscle force and consequently entails a higher compression forces on the spine as compared to symmetric loading. When the trunk musculature is modelled in sufficient detail, optimisation shows that there is no mechanical necessity for an increase in total muscle force (or compression force) with task asymmetry. A physiologically based optimisation does also not predict an increase in total muscle force or spinal loading with asymmetry. EMG data on 14 trunk muscles collected in eight subjects showed antagonistic coactivity to be present in both conditions. However, estimates of total muscle force based on the EMG were lower when producing an asymmetric moment. In conclusion, producing an asymmetric moment appears to cause slightly lower forces on the lumbosacral joint as compared to a symmetric moment. Only lateral shear forces increase with asymmetry but these remain well below failure levels.
机译:本研究的目的是测试以下假设:与对称负荷相比,不对称的躯干负荷需要较高的总肌肉力,因此在脊柱上需要较高的压缩力。当对躯干的肌肉组织进行足够详细的建模时,优化表明没有机械上的必要来以任务不对称性来增加总肌肉力(或压缩力)。基于生理的优化还不能预测总肌肉力或不对称的脊柱负荷增加。在8位受试者中收集的有关14条躯干肌的EMG数据显示,两种情况下均存在拮抗作用。但是,当产生不对称力矩时,基于肌电图的总肌肉力估计值较低。总之,与对称力矩相比,产生不对称力矩似乎会在腰s关节上产生稍低的力。仅横向剪切力随不对称性而增加,但仍远低于破坏水平。

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