Möhler Felix, Fadillioglu Cagla, Stein Thorsten
BioMotion Center, Institute of Sports and Sports Science (IfSS), Karlsruhe Institute of Technology, Karlsruhe, Germany.
Front Sports Act Living. 2021 Feb 17;3:634258. doi: 10.3389/fspor.2021.634258. eCollection 2021.
Fatigue with its underlying mechanisms and effects is a broadly discussed topic and an important phenomenon, particularly in endurance sports. Although several studies have already shown a variety of changes in running kinematics with fatigue, few of them have analyzed competitive runners and even fewer have focused on middle-distance running. Furthermore, the studies investigating fatigue-related changes have mostly reported the results in terms of discrete parameters [e.g., range of motion (RoM)] in the frontal or sagittal plane, and therefore potentially overlooked effects occurring in subphases of the gait cycle or in the transverse plane. On this basis, the goal of the present study was to analyze the effects of exhaustive middle-distance running on expert runners by means of both discrete parameters and time series analysis in 3D. In this study, 13 runners ran on a treadmill to voluntary exhaustion at their individually determined fatigue speeds which was held constant during the measurements. Kinematic data were collected by means of a 3D motion capture system. Spatiotemporal and stiffness parameters as well as the RoM of joints and of center of mass (CoM) within the stance and flight phases were calculated. Independent -tests were performed to investigate any changes in means and coefficients of variation (CV) of these parameters between the rested (PRE) and fatigued (POST) state. Statistical parametric mapping method was applied on the time series data of the joints and the CoM. Results from this exploratory study revealed that during a middle-distance run, expert runners change their stance time, rather than their step frequency or step length in order to maintain the constant running speed as long as possible. Increased upper body movements occurred to counteract the increased angular moment of the lower body possibly due to longer stance times. These findings provide insights into adaptation strategies of expert runners during a fatiguing middle-distance run and may serve a valuable information particularly for comparisons with other group of runners (e.g., females or non-athletes) as well with other conditions (e.g., non-constant speed or interval training), and might be useful for the definition of training goals (e.g., functional core training).
疲劳及其潜在机制和影响是一个广泛讨论的话题,也是一个重要现象,在耐力运动中尤为如此。尽管已有多项研究表明疲劳会使跑步运动学发生多种变化,但其中分析竞技跑步者的研究较少,专注于中距离跑步的研究更少。此外,研究疲劳相关变化的研究大多报告了额状面或矢状面离散参数(如运动范围(RoM))的结果,因此可能忽略了步态周期子阶段或横断面中出现的潜在影响。在此基础上,本研究的目的是通过3D离散参数和时间序列分析来分析力竭性中距离跑步对专业跑步者的影响。在本研究中,13名跑步者在跑步机上以各自确定的疲劳速度自愿跑至力竭,测量过程中该速度保持恒定。通过3D运动捕捉系统收集运动学数据。计算了时空和刚度参数,以及站立和飞行阶段关节和质心(CoM)的RoM。进行独立t检验以研究这些参数在休息(PRE)和疲劳(POST)状态之间的均值和变异系数(CV)的任何变化。将统计参数映射方法应用于关节和CoM的时间序列数据。这项探索性研究的结果表明,在中距离跑步过程中,专业跑步者会改变他们的站立时间,而不是步频或步长,以便尽可能长时间保持恒定的跑步速度。上身运动增加,可能是由于站立时间延长,以抵消下半身增加的角动量。这些发现为专业跑步者在疲劳的中距离跑步过程中的适应策略提供了见解,可能为与其他跑步者群体(如女性或非运动员)以及其他条件(如非恒定速度或间歇训练)的比较提供有价值的信息,并且可能有助于确定训练目标(如功能性核心训练)。