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首页> 外文期刊>Journal of Biomechanics >COMPARISON OF MUSCLE FORCES AND JOINT LOAD FROM AN OPTIMIZATION AND EMG ASSISTED LUMBAR SPINE MODEL - TOWARDS DEVELOPMENT OF A HYBRID APPROACH
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COMPARISON OF MUSCLE FORCES AND JOINT LOAD FROM AN OPTIMIZATION AND EMG ASSISTED LUMBAR SPINE MODEL - TOWARDS DEVELOPMENT OF A HYBRID APPROACH

机译:优化肌力与联合载荷的比较和EMG辅助腰椎模型 - 以杂交方法的发展

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摘要

The purpose of this study was to determine whether the same estimates of individual muscle and L4/L5 lumbar joint compressive forces result from an optimization (OPT) compared to an electromyography (EMG) assisted approach for solving the inderminate moment equilibrium equations in the same anatomical model. Four male subjects performed near maximum, isometric, ramp efforts in trunck flexion, extension and lateral bending in a testing apparatus. The EMG approach was sensitive to subject and trial differences in the magnitudes of individual muscle forces needed to produce the same reaction moment. In contrast, the OPT method converged on a similar estimate of muscle forces for all subjects and trials producing the same moment. The OPT method predicted lower L4/L5 joint compression values, on average, by 32, 43 and 23% in trunk extension, flexion and lateral bending, respectively, because, unlike the EMG method, it could not predict co-contraction of anatomically antagonistic muscles. We incorporated the OPT method's advantage of forcing an equilibrium in the reaction moments into the EMG method in a new approach we have called 'EMG assisted optimization' (EMGAO). Muscle force estimates from the EMG and EMGAO methods differed from those from the OPT method, on average, by 123% (RMS) for flexion and extension and by 218% for lateral bends. Data from the two approaches result in different conclusions about spine mechanics. We have more confidence in the EMG assisted methods because they respond to variation in muscle synergy and co-contraction patterns commonly observed in different trials and subjects for the same reaction moments. [References: 21]
机译:本研究的目的是确定与肌电图(EMG)辅助方法相比,通过优化(选择OPT)来确定各个肌肉和L4 / L5腰部接头压缩力的相同估计,用于求解同一解剖学中的indermate矩平衡方程模型。四个男性受试者在Trunck屈曲,延伸和横向弯曲中的最大值,等距,斜坡努力的最大,斜坡努力中进行了近似的,延伸和横向弯曲。 EMG方法对产生相同反应力矩所需的个体肌肉力大小的受试者和试验差异敏感。相比之下,替代方法融合在同一时刻的所有受试者和试验的肌肉力的类似估计。 opt方法预测了较低的L4 / L5关节压缩值,平均,平均,在躯干延伸,屈曲和横向弯曲中,屈曲和横向弯曲,因为与EMG方法不同,它无法预测解剖学上拮抗的共收缩肌肉。我们将Opt方法纳入了在反应时刻强制平衡的优势,以一种新的方法,我们称为“EMG辅助优化”(EMGAO)。来自EMG和EMGAO方法的肌肉力估计与从OPT方法的肌肉等平均不同123%(RMS),用于屈曲和延伸,横向弯曲的218%。来自两种方法的数据导致关于脊柱力学的不同结论。我们对EMG辅助方法有更多的信心,因为它们响应肌肉协同和共收缩模式的变异,并且在不同的试验和受试者中常见的同一反应时刻。 [参考:21]

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