IEEE Trans Biomed Eng. 2019 May;66(5):1309-1317. doi: 10.1109/TBME.2018.2872833. Epub 2018 Oct 1.
While the sensitivity of estimated muscle forces to muscle-tendon properties is well documented for the lower limbs, little is known about the shoulder and upper limbs. The purpose of this study was to assess the sensitivity of estimated shoulder muscle forces and scapulohumeral joint force to muscle-tendon properties.
One healthy male participant performed arm flexions and simulated throwing maneuvers. Kinematics were recorded using intra-cortical pins. Muscle forces were estimated using static optimization with the generic delft shoulder and elbow in OpenSim, and scapulohumeral joint forces were calculated from the estimated forces. Then, variations from -25% to +25% of the nominal values of the tendon slack length, the optimal fiber length, the maximal isometric force, and the pennation angle were applied to the musculoskeletal model to compute affected muscle forces and scapulohumeral joint force.
The variations in muscle-tendon properties led to changes up to 9.6 N or 174% in the muscle nominal forces. The more sensitive muscles were those that produced the greatest force: the rotator cuff muscles and the prime movers specific to the task. Among the four muscle-tendon properties, the maximal isometric force and the optimal fiber length had the greatest influence on the muscle force variability. Glenohumeral force was slightly influenced by muscle-tendon properties (<8%).
Generic models (i.e., those without personalization of muscle-tendon properties) can lead to misinterpretations of muscle force. Efforts should focus on the maximal isometric force and the optimal fiber length of the rotator cuff muscles and prime movers.
虽然下肢肌肉力量对肌肉肌腱特性的敏感性已有充分的文献记载,但肩部和上肢的情况却知之甚少。本研究旨在评估肩部肌肉力量和肩胛胸壁关节力对肌肉肌腱特性的敏感性。
一名健康男性参与者进行了手臂弯曲和模拟投掷动作。运动学使用皮质内销钉记录。肌肉力量使用 OpenSim 中的通用 Delft 肩部和肘部静态优化进行估计,肩胛胸壁关节力从估计的力中计算得出。然后,将肌腱松弛长度、最佳纤维长度、最大等长力和羽毛角的名义值从 -25%变化到 +25%,应用于肌肉骨骼模型,以计算受影响的肌肉力量和肩胛胸壁关节力。
肌肉肌腱特性的变化导致肌肉名义力量变化高达 9.6N 或 174%。更敏感的肌肉是产生最大力量的肌肉:肩袖肌肉和特定于任务的主要肌肉。在这四种肌肉肌腱特性中,最大等长力和最佳纤维长度对肌肉力量变化的影响最大。盂肱关节力受肌肉肌腱特性的影响较小(<8%)。
通用模型(即没有肌肉肌腱特性个性化的模型)可能导致肌肉力量的误解。应重点关注肩袖肌肉和主要肌肉的最大等长力和最佳纤维长度。