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不同速度下跑步地面反作用力的主成分分析

Principal Component Analysis of the Running Ground Reaction Forces With Different Speeds.

作者信息

Yu Lin, Mei Qichang, Xiang Liangliang, Liu Wei, Mohamad Nur Ikhwan, István Bíró, Fernandez Justin, Gu Yaodong

机构信息

Loudi Vocational and Technical College, Loudi, China.

Faculty of Sports Sciences and Coaching, Sultan Idris Education University, Tanjong Malim, Malaysia.

出版信息

Front Bioeng Biotechnol. 2021 Mar 25;9:629809. doi: 10.3389/fbioe.2021.629809. eCollection 2021.

Abstract

Ground reaction force (GRF) is a key metric in biomechanical research, including parameters of loading rate (LR), first impact peak, second impact peak, and transient between first and second impact peaks in heel strike runners. The GRFs vary over time during stance. This study was aimed to investigate the variances of GRFs in rearfoot striking runners across incremental speeds. Thirty female and male runners joined the running tests on the instrumented treadmill with speeds of 2.7, 3.0, 3.3, and 3.7 m/s. The discrete parameters of vertical average loading rate in the current study are consistent with the literature findings. The principal component analysis was modeled to investigate the main variances (95%) in the GRFs over stance. The females varied in the magnitude of braking and propulsive forces (PC1, 84.93%), whereas the male runners varied in the timing of propulsion (PC1, 53.38%). The female runners dominantly varied in the transient between the first and second peaks of vertical GRF (PC1, 36.52%) and LR (PC2, 33.76%), whereas the males variated in the LR and second peak of vertical GRF (PC1, 78.69%). Knowledge reported in the current study suggested the difference of the magnitude and patterns of GRF between male and female runners across different speeds. These findings may have implications for the prevention of sex-specific running-related injuries and could be integrated with wearable signals for the in-field prediction and estimation of impact loadings and GRFs.

摘要

地面反作用力(GRF)是生物力学研究中的一个关键指标,包括负荷率(LR)、首次冲击峰值、第二次冲击峰值以及足跟撞击跑者首次和第二次冲击峰值之间的瞬态参数。在站立阶段,地面反作用力会随时间变化。本研究旨在调查后足着地跑者在不同递增速度下地面反作用力的变化情况。30名男女跑者参与了在装有仪器的跑步机上进行的跑步测试,速度分别为2.7、3.0、3.3和3.7米/秒。本研究中垂直平均负荷率的离散参数与文献研究结果一致。通过主成分分析模型来研究站立阶段地面反作用力的主要变化情况(95%)。女性在制动和推进力的大小上存在差异(主成分1,84.93%),而男性跑者在推进时间上存在差异(主成分1,53.38%)。女性跑者主要在垂直地面反作用力的第一和第二峰值之间的瞬态(主成分1,36.52%)和负荷率(主成分2,33.76%)方面存在差异,而男性在负荷率和垂直地面反作用力的第二峰值方面存在差异(主成分1,78.69%)。本研究报告的知识表明,不同速度下男女跑者在地面反作用力的大小和模式上存在差异。这些发现可能对预防特定性别的跑步相关损伤具有启示意义,并可与可穿戴信号相结合,用于现场预测和估计冲击负荷及地面反作用力。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d5a8/8026898/300ebe718da2/fbioe-09-629809-g001.jpg

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