Chair of Applied Mechanics, Technical University of Munich, 85748, Garching, Germany.
Department of Mechanical Engineering, University of Alberta, Edmonton, AB, T6G 2R3, Canada.
Sci Rep. 2024 Jun 27;14(1):14879. doi: 10.1038/s41598-024-65258-z.
Predictive neuromuscular simulations are a powerful tool for studying the biomechanics of human walking, and deriving design criteria for technical devices like prostheses or biorobots. Good agreement between simulation and human data is essential for transferability to the real world. The human foot is often modeled with a single rigid element, but knowledge of how the foot model affects gait prediction is limited. Standardized procedures for selecting appropriate foot models are lacking. We performed 2D predictive neuromuscular simulations with six different foot models of increasing complexity to answer two questions: What is the effect of a mobile arch, a toe joint, and the coupling of toe and arch motion through the plantar fascia on gait prediction? and How much of the foot's anatomy do we need to model to predict sagittal plane walking kinematics and kinetics in good agreement with human data? We found that the foot model had a significant impact on ankle kinematics during terminal stance, push-off, and toe and arch kinematics. When focusing only on hip and knee kinematics, rigid foot models are sufficient. We hope our findings will help guide the community in modeling the human foot according to specific research goals and improve neuromuscular simulation accuracy.
预测性神经肌肉模拟是研究人类步行生物力学的有力工具,并为假肢或生物机器人等技术设备提供设计标准。模拟与人体数据之间的良好一致性对于向现实世界的转移至关重要。人类的脚通常使用单个刚性元件进行建模,但对于脚模型如何影响步态预测的了解有限。缺乏选择合适脚模型的标准化程序。我们使用六种不同的、复杂度逐渐增加的脚模型进行二维预测性神经肌肉模拟,以回答两个问题:活动足弓、脚趾关节以及通过足底筋膜耦合脚趾和足弓运动对步态预测有什么影响?为了与人体数据很好地预测矢状面步行运动学和动力学,我们需要对足部的多少解剖结构进行建模?我们发现,脚模型对终末站立、蹬离和脚趾与足弓运动期间的踝关节运动学有显著影响。当仅关注髋关节和膝关节运动学时,刚性脚模型就足够了。我们希望我们的研究结果将有助于根据特定的研究目标指导社区对人类脚进行建模,并提高神经肌肉模拟的准确性。