Department of Mechanical Engineering, Faculty of Engineering, Istanbul University-Cerrahpasa, Avcilar, Istanbul 34320, Turkey.
Department of Mechanical Engineering, University of Melbourne, Parkville, Victoria 3010, Australia.
J Biomech Eng. 2020 May 1;142(5). doi: 10.1115/1.4045660.
Various methods are available for simulating the movement patterns of musculoskeletal systems and determining individual muscle forces, but the results obtained from these methods have not been rigorously validated against experiment. The aim of this study was to compare model predictions of muscle force derived for a cat hindlimb during locomotion against direct measurements of muscle force obtained in vivo. The cat hindlimb was represented as a 5-segment, 13-degrees-of-freedom (DOF), articulated linkage actuated by 25 Hill-type muscle-tendon units (MTUs). Individual muscle forces were determined by combining gait data with two widely used computational methods-static optimization and computed muscle control (CMC)-available in opensim, an open-source musculoskeletal modeling and simulation environment. The forces developed by the soleus, medial gastrocnemius (MG), and tibialis anterior muscles during free locomotion were measured using buckle transducers attached to the tendons. Muscle electromyographic activity and MTU length changes were also measured and compared against the corresponding data predicted by the model. Model-predicted muscle forces, activation levels, and MTU length changes were consistent with the corresponding quantities obtained from experiment. The calculated values of muscle force obtained from static optimization agreed more closely with experiment than those derived from CMC.
有多种方法可用于模拟肌肉骨骼系统的运动模式并确定各个肌肉的力量,但这些方法的结果尚未经过严格的实验验证。本研究旨在比较运动过程中猫后肢肌肉力量的模型预测值与体内直接测量的肌肉力量值。猫的后肢被表示为 5 个关节、13 个自由度(DOF)的铰接连杆,由 25 个 Hill 型肌-腱单元(MTU)驱动。通过将步态数据与两种广泛应用于 opensim 的计算方法(静态优化和计算肌肉控制(CMC))相结合,确定了各个肌肉的力量。opensim 是一种开源的肌肉骨骼建模和仿真环境。使用附在肌腱上的扣式传感器测量了在自由运动过程中比目鱼肌、内侧腓肠肌(MG)和胫骨前肌产生的力。还测量了肌肉肌电图活动和 MTU 长度变化,并将其与模型预测的数据进行了比较。模型预测的肌肉力量、激活水平和 MTU 长度变化与实验获得的相应数量一致。与 CMC 相比,从静态优化计算得出的肌肉力值更符合实验值。