青少年足球运动员脚背踢的速度-精度权衡

Bojan B. Rakojević, Vladimir Mrdaković, N. Pažin, Radun Vulović, B. Leontijević, D. Ilić
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引用次数: 1

摘要

快速运动的速度和精度之间的权衡是相反的,因此被称为菲茨定律。本研究的目的是确定如何脚背踢(IK)速度分级指令影响脚背踢的速度和准确性。主要假设是,一个复杂的运动任务,如IK,在速度和精度之间有反比关系,次要假设是,应用的速度分级指令是敏感的。研究对象为13名男性球员,平均年龄15岁(±1.6岁)。实验方案包括以五种不同的速度执行IK,由应答者的口头指示决定。为了评估踢脚精度,我们观察了以下因变量:平均径向误差(MRE)、双变量误差(BVE)和质心径向误差(CRE)。对比分析表明,在较低的踢腿速度下,可以获得更高的精度(降低MRE)和踢腿一致性(降低BVE),但在CRE方面没有达到这些效果。随后的分析表明,MRE在最慢踢腿和最快踢腿之间有显著差异的趋势(p=0.068-0.075),而在BVE的情况下,发现最慢踢腿和所有其他速度水平之间存在差异(p≤0.05)。本研究的主要发现表明,在复杂的运动任务(如IK(多关节和离散运动)中,速度和精度之间存在部分反比关系(三个变量中的两个)。
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SPEED-ACCURACY TRADEOFF OF INSTEP KICK IN YOUNG SOCCER PLAYERS
The speed-accuracy trade-off of fast movements acts inversely and as such is known as the Fitts's law. The aim of this study is to determine how instep kick (IK) speed grading instructions affect the instep kick speed and accuracy. The primary hypothesis assumes that a complex motor task such as IK has an inverse relation between speed and accuracy, and the secondary hypothesis assumes that the applied speed grading instructions are sensitive. The research involved 13 male players, the average age of 15 years (±1.6). The experimental protocol included the execution of IK at five different speeds, determined by verbal instructions to respondents. For assessment of kicking accuracy, we observed the following dependent variables: mean radial error (MRE), bivariate variable error (BVE), and centroid radial error (CRE). Comparative analysis has shown that higher accuracy (reduced MRE) and kicking consistency (reduced BVE) are achieved under lower kicking speeds, but these effects were not achieved in regard to CRE. Subsequent analyses have shown that MRE has a tendency towards a significant difference between the slowest and fastest kicks (p=0.068-0.075), while in the case of BVE it has been found that there are differences between the slowest and all other speed levels (p≤0.05). The main findings of this study have indicated a partial existence (two of three variables) of an inverse relationship between speed and accuracy in complex motor tasks such as IK (multi-joint and discrete motion).
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