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模拟足球踢球过程中脑电信号、运动运动学与结果之间的关系。

Modelling the relationships between EEG signals, movement kinematics and outcome in soccer kicking.

作者信息

Palucci Vieira Luiz H, Carling Christopher, da Silva João Pedro, Santinelli Felipe B, Polastri Paula F, Santiago Paulo R P, Barbieri Fabio A

机构信息

Human Movement Research Laboratory (MOVI-LAB), Faculty of Sciences, Graduate Program in Movement Sciences, Department of Physical Education, São Paulo State University (Unesp), Av. Eng. Luís Edmundo Carrijo Coube, 2085 - Nucleo Res. Pres. Geisel, Bauru, SP 17033-360 Brazil.

French Football Federation, 87 bd Grenelle, 75015 Paris, France.

出版信息

Cogn Neurodyn. 2022 Dec;16(6):1303-1321. doi: 10.1007/s11571-022-09786-2. Epub 2022 Feb 25.

Abstract

UNLABELLED

The contribution of cortical activity (e.g. EEG recordings) in various brain regions to motor control during goal-directed manipulative tasks using lower limbs remains unexplored. Therefore, the aim of the current study was to determine the magnitude of associations between EEG-derived brain activity and soccer kicking parameters. Twenty-four under-17 players performed an instep kicking task (18 m from the goal) aiming to hit 1 × 1 m targets allocated in the goalpost upper corners in the presence of a goalkeeper. Using a portable 64-channel EEG system, brain oscillations in delta, theta, alpha, beta and gamma frequency bands were determined at the frontal, motor, parietal and occipital regions separately for three phases of the kicks: preparatory, approach and immediately prior to ball contact. Movement kinematic measures included segmental linear and relative velocities, angular joint displacement and velocities. Mean radial error and ball velocity were assumed as outcome indicators. A significant influence of frontal theta power immediately prior to ball contact was observed in the variance of ball velocity (  = 35%,  = 0.01) while the expression of occipital alpha component recorded during the preparatory phase contributed to the mean radial error (  = 20%,  = 0.049). Ankle eversion angle at impact moment likely mediated the association between frontal theta power and subsequent ball velocity (β = 0.151,  = 0.06). The present analysis showed that the brain signalling at cortical level may be determinant in movement control, ball velocity and accuracy when performing kick attempts from the edge of penalty area. #RBR-8prx2m-Brazilian Registry of Clinical Trials ReBec.

SUPPLEMENTARY INFORMATION

The online version contains supplementary material available at 10.1007/s11571-022-09786-2.

摘要

未标注

在使用下肢进行目标导向的操纵任务期间,大脑各区域的皮质活动(如脑电图记录)对运动控制的贡献仍未得到探索。因此,本研究的目的是确定脑电图衍生的大脑活动与足球踢球参数之间关联的程度。24名17岁以下的球员进行了一次脚背踢球任务(距离球门18米),目标是在有守门员的情况下击中分配在球门柱上角的1×1米的目标。使用便携式64通道脑电图系统,分别在额部、运动区、顶叶和枕叶区域确定了踢球三个阶段(准备阶段、助跑阶段和即将触球前)的δ、θ、α、β和γ频段的脑振荡。运动运动学测量包括节段线性和相对速度、关节角位移和速度。平均径向误差和球速被视为结果指标。在球速的方差中观察到即将触球前额部θ功率的显著影响( = 35%, = 0.01),而准备阶段记录的枕部α成分的表达对平均径向误差有贡献( = 20%, = 0.049)。击球瞬间的踝关节外翻角度可能介导了额部θ功率与随后球速之间的关联(β = 0.151, = 0.06)。本分析表明,当在罚球区边缘进行踢球尝试时,皮质水平的大脑信号可能在运动控制、球速和准确性方面起决定性作用。#RBR - 8prx2m - 巴西临床试验注册中心ReBec。

补充信息

在线版本包含可在10.1007/s11571 - 022 - 09786 - 2获取的补充材料。

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