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Isometric shoulder muscle activation patterns for 3-D planar forces: A methodology for musculo-skeletal model validation.

机译:用于3-D平面力的等距肩部肌肉激活模式:肌肉骨骼模型验证的方法。

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Objective. To present an isometric method for validation of a shoulder model simulation by means of experimentally obtained electromyography and addressing all muscles active around the shoulder joints. Background. Analysis of muscle force distribution in the shoulder by means of electromyography during motion tasks is hampered by artificial and non-linear amplitude modulation and is often limited to downward directed external forces. This application of EMG is therefore inadequate and insufficient for the validation of shoulder model simulations. We suggest an isometric method including multi-directional forces to overcome these problems. Methods. A force with constant magnitude is actively rotated stepwise in 20 directions perpendicular around the arm while kept in one position. The isometric muscle activation (EMG) is a function of the clockwise-rotated force angle, characterized by baseline activation, and a section of increased muscle activation characterized by baseline interceptions and direction and magnitude of maximum muscle activation. Comparison of the parameterised muscle activation with predicted muscle forces from model simulation illustrates the applicability for musculo-skeletal model validation. Results. All recorded shoulder muscles were active over a section of force angles of at least 180 degrees. Some muscles demonstrated two activation sections. The estimated model sensitivity for the baseline interceptions was SD=5 degrees -10 degrees. The Principal Action was the most reliable parameter (SD=4 degrees ). A correlation of 0.778 was observed between model simulations and EMG recordings. Conclusions. The methodology addresses all shoulder muscles over a substantial section of planar force directions. This enables the comparison of experimentally determined direction of activation on- and offset and direction of maximum activation with equivalent muscle forces, predicted from model simulation. Relevance The proposed method is a promising tool for both comparing EMG recordings and model simulations and can also be used as a stand-alone method for follow-up of clinical interventions.
机译:目的。提出一种等轴测方法,通过实验获得的肌电图检查肩膀模型仿真,并解决肩关节周围所有活动的肌肉。背景。在运动任务期间通过肌电图分析肩膀中的肌肉力量分布受到人工​​和非线性幅度调制的阻碍,并且通常仅限于向下定向的外力。因此,EMG的这种应用不足以验证肩部模型仿真。我们建议采用一种包括多方向力的等距方法来克服这些问题。方法。保持在一个位置时,恒定大小的力会沿垂直于手臂的20个方向逐步逐步旋转。等距肌肉激活(EMG)是顺时针旋转的力角(以基线激活为特征)和增加的肌肉激活部分(以基线拦截和最大肌肉激活的方向和大小为特征)的函数。通过模型仿真将参数化的肌肉激活与预测的肌肉力进行比较,说明了肌肉骨骼模型验证的适用性。结果。所有记录的肩部肌肉在至少180度的力角范围内均处于活动状态。一些肌肉表现出两个激活部分。基线拦截的估计模型灵敏度为SD = 5度-10度。主要动作是最可靠的参数(SD = 4度)。在模型仿真和EMG记录之间观察到0.778的相关性。结论该方法论解决了大部分平面力方向上的所有肩部肌肉。这使得能够将实验确定的激活方向和偏移方向与最大激活方向与等效的肌肉力进行比较,该模拟力是根据模型模拟预测的。相关性所提出的方法是用于比较EMG记录和模型模拟的有前途的工具,也可以用作临床干预措施的独立方法。

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