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Changes in Predicted Muscle Coordination with Subject-Specific Muscle Parameters for Individuals after Stroke

机译:预测肌肉协调与中风后个体的特异性肌肉参数的变化

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Muscle weakness is commonly seen in individuals after stroke, characterized by lower forces during a maximal volitional contraction. Accurate quantification of muscle weakness is paramount when evaluating individual performance and response to after stroke rehabilitation. The objective of this study was to examine the effect of subject-specific muscle force and activation deficits on predicted muscle coordination when using musculoskeletal models for individuals after stroke. Maximum force generating ability and central activation ratio of the paretic plantar flexors, dorsiflexors, and quadriceps muscle groups were obtained using burst superimposition for four individuals after stroke with a range of walking speeds. Two models were created per subject: one with generic and one with subject-specific activation and maximum isometric force parameters. The inclusion of subject-specific muscle data resulted in changes in the model-predicted muscle forces and activations which agree with previously reported compensation patterns and match more closely the timing of electromyography for the plantar flexor and hamstring muscles. This was the first study to create musculoskeletal simulations of individuals after stroke with subject-specific muscle force and activation data. The results of this study suggest that subject-specific muscle force and activation data enhance the ability of musculoskeletal simulations to accurately predict muscle coordination in individuals after stroke.
机译:肌肉弱点在中风后常见于中风,其特征在最大的激动收缩期间的较低力。在评估个人性能和卒中后响应时,精确定量肌肉弱点是至关重要的。本研究的目的是在使用中风后使用肌肉骨骼模型时,检查对象特异性肌肉力和激活缺陷对预测肌肉协调的影响。在中风后,使用爆破叠加在中风后,获得了瘫痪跖屈肌屈曲能力和中央活化率和中央活化率。每个主题创建两个模型:一个带有通用和一个具有主题的激活和最大等距力参数的模型。包含主题特异性肌肉数据导致模型预测的肌肉力和激活的变化,这与先前报道的补偿模式同意,并更紧密地匹配跖屈肌的肌电图和腿筋肌肉的时序。这是第一项以患有特定于学特定的肌肉力和激活数据在中风后产生肌肉骨骼模拟的研究。本研究的结果表明,特异性肌肉力和激活数据增强了肌肉骨骼模拟的能力,以准确地预测中风后肌肉协调。

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