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The effect of reducing the number of EMG channel inputs on loading and stiffness estimates from an EMG-driven model of the spine

机译:减少EMG通道输入的数量对脊椎EMG驱动模型的载荷和刚度估算的影响

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摘要

Electromyography (EMG)-driven models of the spine routinely require between ten and 14 EMG channels to estimate joint load and stiffness variables. This study was designed to determine the sensitivity of common EMG-driven model outputs to the removal of individual EMG channels, and to test two adapted models driven from eight channels. A total of 11 male participants performed a variety of static exertions designed to resist either an applied trunk flexion or right side trunk lateral bend moment. In this study, 14 channels of EMG were recorded and used to drive a biomechanical model of the spine to predict L4-L5 joint load and stiffness values. The model was subsequently re-run after the removal of individual pairs of bilateral EMG channels, and again with eight-channel models in which the rectus abdominus, latissimus dorsi and multifidus EMG-channels were eliminated. Results showed that the eight-channel model provided estimates for the majority of output variables that did not differ substantially from the 14 channel model, except in instances in which muscle force output was ramped to resist flexion moments. Estimates of the output variables were, in general, improved when multifidus fascicles were re-added to the model and driven from the lumbar erector spinae EMG sites.
机译:肌电图(EMG)驱动的脊柱模型通常需要10到14个EMG通道,以估计关节负荷和刚度变量。这项研究旨在确定常见的EMG驱动模型输出对删除单个EMG通道的敏感性,并测试从八个通道驱动的两个适应模型。共有11名男性参与者进行了各种静态锻炼,旨在抵抗施加的躯干屈曲或右侧躯干的侧向弯矩。在这项研究中,记录了14个EMG通道,并用于驱动脊柱的生物力学模型以预测L4-L5关节负荷和刚度值。该模型随后在去除了成对的双侧EMG通道后重新运行,并再次使用了八通道模型,其中消除了腹直肌,背阔肌和多裂肌EMG通道。结果表明,八通道模型为大多数输出​​变量提供了估算值,这些变量与14通道模型没有实质性差异,除了在肌肉力量输出增加以抵抗屈曲力矩的情况下。通常,将多纤维束添加到模型中并从腰直肌脊柱肌电图部位驱动时,输出变量的估计会得到改善。

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