Department of Exercise Sciences, The University of Auckland, Auckland, New Zealand.
Yueyang Hospital of Integrated Traditional Chinese and Western Medicine, Shanghai University of Traditional Chinese Medicine, Shanghai, China.
Comput Biol Med. 2021 Jul;134:104436. doi: 10.1016/j.compbiomed.2021.104436. Epub 2021 May 5.
Clinical gait analysis incorporated with neuromusculoskeletal modelling could provide valuable information about joint movements and muscle functions during ambulation for children with cerebral palsy (CP). This study investigated how imposing pre-calculated joint angles during musculoskeletal model scaling influence the ankle joint angle and muscle force computation. Ten children with CP and equinus gait underwent clinical gait analysis. For each participant, a "default" (scaled without pre-calculated joint angles) and a "PJA" (scaled with pre-calculated ankle joint angles) model were generated to simulate their gait. Ankle joint angles were calculated with an inverse kinematic (IK) and direct kinematic (DK) approach. Triceps surae and tibialis anterior muscle forces were predicted by static optimisation and EMG-assisted modelling. We found that PJA-derived ankle angles showed a better agreement with what derived from the DK approach. The tibialis anterior muscle prediction was more likely to be affected by the scaling methods for the static optimisation approach and the gastrocnemius muscle force prediction was more likely to be influenced for the EMG-assisted modelling. This study recommends using the PJA model since the good consistency between IK and DK-derived joint angles facilitates communication among different research disciplines.
临床步态分析与神经肌肉骨骼建模相结合,可以为脑瘫儿童步行时的关节运动和肌肉功能提供有价值的信息。本研究探讨了在肌肉骨骼模型缩放过程中施加预先计算的关节角度如何影响踝关节角度和肌肉力量计算。10 名患有脑瘫和马蹄内翻足的儿童接受了临床步态分析。对于每个参与者,生成了一个“默认”(未经预先计算的关节角度缩放)和一个“PJA”(经预先计算的踝关节角度缩放)模型来模拟他们的步态。使用逆运动学(IK)和直接运动学(DK)方法计算踝关节角度。通过静态优化和肌电图辅助建模预测小腿三头肌和胫骨前肌的力量。我们发现,PJA 衍生的踝关节角度与 DK 方法衍生的角度具有更好的一致性。对于静态优化方法,胫骨前肌的预测更有可能受到缩放方法的影响,而对于肌电图辅助建模,腓肠肌力量的预测更有可能受到影响。本研究建议使用 PJA 模型,因为 IK 和 DK 衍生关节角度之间的良好一致性有助于不同研究领域之间的交流。