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优秀足球运动员在比赛中跑动位置、比赛半场和比赛日对躯干倾斜度、G 力和运动效率的影响。

Effect of Playing Position, Match Half, and Match Day on the Trunk Inclination, G-Forces, and Locomotor Efficiency Experienced by Elite Soccer Players in Match Play.

机构信息

Health Research Centre, University of Almería, 04120 Almería, Spain.

Faculty of Computer Science, Multimedia and Telecommunications, Universitat Oberta de Catalunya, 08018 Barcelona, Spain.

出版信息

Sensors (Basel). 2020 Oct 14;20(20):5814. doi: 10.3390/s20205814.

Abstract

The rapid growth of wearable sensors has allowed the analysis of trunk kinematics during the match, which is necessary for having a better understanding of the postural demands of soccer players. However, some contextual variables may have an impact on the physical demands of the players. This study aimed to analyze the effect of three contextual variables (playing position, match half, and match day) on the sagittal trunk inclination, G-forces, and locomotor efficiency experienced by soccer players in match play. Then, wearable sensors were used to collect the trunk kinematics during 13 matches. Firstly, positional differences were found on the trunk inclination ( = 0.01) and the G-forces experienced by the players ( < 0.001). For example, the greatest and lowest trunk inclination was found for FW (34.01°) and FB (28.85°) while the greatest and lowest G-forces were found for WMF (1.16 G) and CD (1.12 G), respectively. However, there were no positional differences in the locomotor efficiency ( = 0.10). Secondly, the match half had a significant effect on the trunk inclination ( = 0.01) and the G-forces experienced by the players ( < 0.001) with significantly lower values observed during the second half. No differences between halves were found on the locomotor efficiency for any playing position ( = 0.41). Finally, no significant effect of match day on any variable was observed. This investigation is one of the first steps towards enhancing the understanding of trunk kinematics from elite soccer players. The positional differences found on the trunk inclination and G-forces imply that the development of position-specific training drills considering the postural demands is necessary to prepare the players not only for the physical demands but also for successful performance in the field of regard. The resistance to fatigue needs to be trained given the differences between halves.

摘要

可穿戴传感器的快速发展使得对比赛中躯干运动学的分析成为可能,这对于更好地理解足球运动员的姿势需求至关重要。然而,一些环境变量可能会对运动员的身体需求产生影响。本研究旨在分析三个环境变量(场上位置、比赛半场和比赛日)对比赛中足球运动员矢状面躯干倾斜度、G 力和运动效率的影响。然后,使用可穿戴传感器在 13 场比赛中收集了躯干运动学数据。首先,在躯干倾斜度( = 0.01)和球员所经历的 G 力( < 0.001)方面发现了位置差异。例如,FW(34.01°)和 FB(28.85°)的躯干倾斜度最大和最小,而 WMF(1.16 G)和 CD(1.12 G)的 G 力最大和最小。然而,在运动效率方面没有位置差异( = 0.10)。其次,比赛半场对躯干倾斜度( = 0.01)和球员所经历的 G 力( < 0.001)有显著影响,下半场的这些值明显较低。对于任何场上位置,在运动效率方面,两个半场之间没有差异( = 0.41)。最后,没有观察到比赛日对任何变量的显著影响。这项研究是深入了解精英足球运动员躯干运动学的第一步。在躯干倾斜度和 G 力方面发现的位置差异表明,需要考虑姿势需求制定特定位置的训练计划,以使运动员不仅为身体需求做好准备,而且为在关注领域取得成功做好准备。鉴于半场之间的差异,需要进行抗疲劳训练。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/ffbe/7602370/0c1d767c148e/sensors-20-05814-g001.jpg

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