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Subject-Specific Tendon-Aponeurosis Definition in Hill-Type Model Predicts Higher Muscle Forces in Dynamic Tasks

机译:在山型型号特定主题的肌腱腱膜定义预言更高的肌力动态任务

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摘要

Neuromusculoskeletal models are a common method to estimate muscle forces. Developing accurate neuromusculoskeletal models is a challenging task due to the complexity of the system and large inter-subject variability. The estimation of muscles force is based on the mechanical properties of tendon-aponeurosis complex. Most neuromusculoskeletal models use a generic definition of the tendon-aponeurosis complex based on in vitro test, perhaps limiting their validity. Ultrasonography allows subject-specific estimates of the tendon-aponeurosis complex’s mechanical properties. The aim of this study was to investigate the influence of subject-specific mechanical properties of the tendon-aponeurosis complex on a neuromusculoskeletal model of the ankle joint. Seven subjects performed isometric contractions from which the tendon-aponeurosis force-strain relationship was estimated. Hopping and running tasks were performed and muscle forces were estimated using subject-specific tendon-aponeurosis and generic tendon properties. Two ultrasound probes positioned over the muscle-tendon junction and the mid-belly were combined with motion capture to estimate the in vivo tendon and aponeurosis strain of the medial head of gastrocnemius muscle. The tendon-aponeurosis force-strain relationship was scaled for the other ankle muscles based on tendon and aponeurosis length of each muscle measured by ultrasonography. The EMG-driven model was calibrated twice - using the generic tendon definition and a subject-specific tendon-aponeurosis force-strain definition. The use of subject-specific tendon-aponeurosis definition leads to a higher muscle force estimate for the soleus muscle and the plantar-flexor group, and to a better model prediction of the ankle joint moment compared to the model estimate which used a generic definition. Furthermore, the subject-specific tendon-aponeurosis definition leads to a decoupling behaviour between the muscle fibre and muscle-tendon unit in agreement with previous experiments using ultrasonography. These results indicate the use of subject-specific tendon-aponeurosis definitions in a neuromusculoskeletal model produce better agreement with measured external loads and more physiological model behaviour.
机译:神经肌肉骨骼模型是估计肌肉力量的常用方法。由于系统的复杂性和受试者间的巨大变异性,开发准确的神经肌肉骨骼模型是一项具有挑战性的任务。肌肉力量的估计基于肌腱-腱膜复合体的机械性能。大多数神经肌肉骨骼模型使用基于体外测试的肌腱-腱膜复合体的通用定义,这可能会限制其有效性。超声检查可以根据特定受试者对肌腱-腱膜复合体的机械性能进行估算。这项研究的目的是研究肌腱-腱膜复合物的受试者特定机械性能对踝关节神经肌肉骨骼模型的影响。七名受试者进行了等距收缩,据此估算了肌腱-腱膜的力-应变关系。进行跳跃和跑步任务,并使用特定于受试者的腱腱膜和一般的腱特性评估肌肉力量。将位于肌腱连接处和中腹部的两个超声探头与运动捕捉结合,以估计腓肠肌内侧头的体内肌腱和腱膜应变。基于通过超声检查测得的每条肌肉的肌腱和腱膜长度,对其他脚踝肌肉的肌腱-腱膜力-应变关系进行缩放。 EMG驱动的模型已校准两次-使用通用的腱定义和特定于受试者的腱-腱膜张力-应变定义。与使用通用定义的模型估计相比,使用特定于受试者的腱-腱膜病定义可以导致比目鱼肌和足底屈肌群的肌肉力估计更高,并且可以更好地预测踝关节弯矩。此外,与先前使用超声检查的实验相一致,受治疗者特定的腱-腱膜病定义导致了肌肉纤维和肌腱单元之间的解耦行为。这些结果表明,在神经肌肉骨骼模型中使用特定于受试者的腱-腱膜病定义可以更好地与所测得的外部负荷相吻合,并具有更多的生理模型行为。

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