The penalty kick accuracy in soccer: A new biomechanical approach

M. Attaallah, S. Bassiouni, A. Hassan, C. Sunderland, W. Soliman, M. Amin, H. Tschan
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引用次数: 0

Abstract

The purpose of this study was to present a practical novel method to calculate the penalty kick accuracy in football. The mathematical advantage considered the ratio of the rectangle goal dimension (1:3) and equalized between horizontal axis as it longer 3 times than the vertical axis. Twelve male soccer players 16 (3) years)), height 174.7 (4.5) cm)), body mass 67.6 (5.5) kg)) volunteered to participate in this study. The players were asked to do penalty kicks where the ball is aimed at the farthest point from the centre of the target portion for shooting. The soccer goal was split into quarters at three different velocities (low, medium, and high) the calculation was conducted two times by height to width ratio (HWR) and the most common method radial error. Kinovea Software 0.8.27. were used for digitizing. The ICC demonstrated high reliability (r = .99) for digitization at the moment the ball crossed the goal line for the inter and intra-ratter reliability. There was a significant relationship between some kinematics variables of the ball and the accuracy outcome of the HWR method in the four sections of the goal (p < .05).
足球罚点球的准确性:一种新的生物力学方法
本研究的目的是提出一种实用的新方法来计算足球比赛中的点球正确率。数学上的优势考虑了矩形球门尺寸的比例(1:3)和水平轴之间的平衡,因为它比垂直轴长3倍。12名16岁、身高174.7 (4.5)cm、体重67.6 (5.5)kg的男性足球运动员自愿参加了这项研究。球员们被要求罚点球,将球射向距离目标区域中心最远的地方。将足球球门以三种不同的速度(低、中、高)分成四部分,通过高宽比(HWR)和最常用的径向误差方法进行了两次计算。Kinovea软件0.8.27。被用于数字化。在球越过球门线的瞬间,ICC在内部和内部的可靠性方面表现出很高的可靠性(r = 0.99)。球的一些运动学变量与HWR方法在球门四个部分的精度结果之间存在显著关系(p < 0.05)。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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