Musculoskeletal simulation of professional ski jumpers during take-off considering aerodynamic forces
作者:Yi Huang, Liang Jiang, Xue Chen, Qing Sun, Xiao Zhang, Xunan Tan, Yan Du, Fangtong Zhang, Nannan Wang, Rufeng Su, Feng Qu, Guoqing Zhang, Bo Huo · 发表于:Frontiers in Bioengineering and Biotechnology · 年份:2023 · DOI:10.3389/fbioe.2023.1241135 · 被引用次数:9 · 研究领域:Winter Sports Injuries and Performance、Sports injuries and prevention、Sports Performance and Training
Introduction: Musculoskeletal simulation has been widely used to analyze athletes’ movements in various competitive sports, but never in ski jumping. Aerodynamic forces during ski jumping take-off have been difficult to account for in dynamic simulation. The purpose of this study was to establish an efficient approach of musculoskeletal simulation of ski jumping take-off considering aerodynamic forces and to analyze the muscle function and activity. Methods: Camera-based marker-less motion capture was implemented to measure the take-off kinematics of eight professional jumpers. A suitable full-body musculoskeletal model was constructed for the simulation. A method based on inverse dynamics iteration was developed and validated to estimate the take-off ground reaction force. The aerodynamic forces, which were calculated based on body kinematics and computational fluid dynamics simulations, were exerted on the musculoskeletal model as external forces. The activation and joint torque contributions of lower extremity muscles were calculated through static optimization. Results: The estimated take-off ground reaction forces show similar trend with the results from past studies. Although overall inconsistencies between simulated muscle activation and EMG from previous studies were observed, it is worth noting that the activation of the tibialis anterior, gluteus maximus, and long head of the biceps femoris was similar to specific EMG results. Among lower extremity extensors, soleus...