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运动学对网球发球速度的影响:使用Xsens MVN生物力学链接技术的深入分析

The Influence of Kinematics on Tennis Serve Speed: An In-Depth Analysis Using Xsens MVN Biomech Link Technology.

作者信息

Brito André V, Fonseca Pedro, Costa Mário J, Cardoso Ricardo, Santos Catarina C, Fernandez-Fernandez Jaime, Fernandes Ricardo J

机构信息

Centre of Research, Education, Innovation and Intervention in Sport (CIFI2D) and Porto Biomechanics Laboratory (LABIOMEP), Faculty of Sport, University of Porto, 4200-450 Porto, Portugal.

Department of Sport Sciences, Higher Institute of Educational Sciences of the Douro (ISCE-Douro), 4560-708 Penafiel, Portugal.

出版信息

Bioengineering (Basel). 2024 Sep 27;11(10):971. doi: 10.3390/bioengineering11100971.

Abstract

An inertial measurement system, using a combination of accelerometers, gyroscopes and magnetometers, is of great interest to capture tennis movements. We have assessed the key biomechanical moments of the serve phases and events, as well as the kinematic metrics during the serve, to analyze their influence on serve speed. Eighteen male competitive tennis players, equipped with the inertial measurement units, performed a prolonged serve game consisting of 12 simulated points. Participants were divided into groups A and B in accordance with their positioning above or below the sample average serve speed. Group A (compared with their counterparts) presented with lower back hip adduction and knee flexion, and a higher leftward thoracic tilt during the impact event (-14.9 ± 6.9 vs. 13.8 ± 6.4, 2.8 ± 5.9 vs. 14.3 ± 13.0 and -28.9 ± 6.3 vs. 28.0 ± 7.3°). In addition, group A exhibited higher maximal angular velocities in the wrist and thorax, as well as a lower maximal angular velocity in the back hip than group B (427.0 ± 99.8 vs. 205.4 ± 9.7, 162.4 ± 81.7 vs. 193.5 ± 43.8, 205.4 ± 9.7 vs. 308.3 ± 111.7, 193.5 ± 43.8 vs. 81.1 ± 49.7°/s). The relevant biomechanical differences during the serve were identified, highlighting the changes in joint angles and angular velocities between the groups, providing meaningful information for coaches and players to improve their serve proficiency.

摘要

一种使用加速度计、陀螺仪和磁力计组合的惯性测量系统,对于捕捉网球运动非常有吸引力。我们评估了发球阶段和事件的关键生物力学力矩,以及发球过程中的运动学指标,以分析它们对发球速度的影响。18名配备惯性测量单元的男性竞技网球运动员进行了一场由12个模拟得分组成的长时间发球比赛。参与者根据其发球速度高于或低于样本平均发球速度分为A组和B组。A组(与B组相比)在击球事件中表现出较低的背部臀部内收和膝盖屈曲,以及较高的向左胸廓倾斜(-14.9±6.9与13.8±6.4、2.8±5.9与14.3±13.0以及-28.9±6.3与28.0±7.3°)。此外,A组在手腕和胸部表现出比B组更高的最大角速度,而在背部臀部的最大角速度则低于B组(427.0±99.8与205.4±9.7、162.4±81.7与193.5±43.8、205.4±9.7与308.3±111.7、193.5±43.8与81.1±49.7°/秒)。确定了发球过程中的相关生物力学差异,突出了两组之间关节角度和角速度的变化,为教练和球员提高发球技术提供了有意义的信息。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/b156/11504545/481b523756b1/bioengineering-11-00971-g001.jpg

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