Mechanical Determinants of Superior Horizontal Deceleration Performance in Multidirectional Sportspersons.

IF 2.5 2区 医学 Q2 SPORT SCIENCES
Wei Li, Junlei Lin, Thomas Dos'Santos, Anthony Turner
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Abstract

Abstract: Li, W, Lin, J, Dos'Santos, T, and Turner, A. Mechanical determinants of superior horizontal deceleration performance in multidirectional sportspersons. J Strength Cond Res XX(X): 000-000, 2025-This study aimed to (a) examine the mechanical determinants of superior horizontal deceleration and (b) compare ground reaction force (GRF) characteristics of the first and second braking foot contacts during horizontal deceleration between higher and lower deceleration performers. Forty-two trained male student-athletes from multidirectional team sports performed 3 maximal deceleration trials after a 15-m sprint, with GRF data over the first 2 braking steps collected using force plates. Horizontal velocity was collected using a radar gun, and p < 0.05 was considered statistically significant. Greater mean and peak deceleration were statistically significantly correlated with greater mean horizontal GRF ratio at both braking foot contacts (ρ = 0.31-0.49, p < 0.05). Comparing lower mean and peak deceleration performers, greater performers displayed statistically significantly greater mean horizontal GRF ratios at both braking steps (effects size [ES] = 3.53-5.00, p < 0.05) and lower approach momentum (ES = 0.62 and 0.66). Compared with lower approach momentum performers, greater performers displayed statistically significantly greater mean and peak deceleration scores (ES = 0.70 and 0.66, p < 0.05). Practitioners should aim to maximize horizontal GRF production and orientate force more horizontally for more effective deceleration. However, faster approach velocities, especially when accompanied with greater body mass (and thus momentum), will likely see a reduction in deceleration performance on account of higher braking demands. This is likely an unavoidable paradox, and thus, deceleration performance must always be presented considering approach velocity and momentum.

多向运动员卓越水平减速性能的力学决定因素。
[摘要]Li, W, Lin, J, Dos'Santos, T, and Turner, A.多向运动员卓越水平减速表现的力学决定因素。[J]强度分析研究XX(X): 000-000, 2025-本研究旨在(a)检验卓越水平减速的机械决定因素,(b)比较高减速和低减速者在水平减速过程中第一和第二制动脚接触的地面反作用力(GRF)特性。42名来自多向团体项目的训练好的男学生运动员在15米短跑后进行了3次最大减速试验,并使用测力板收集了前两个制动步骤的GRF数据。水平速度采用雷达枪采集,p < 0.05为差异有统计学意义。平均减速度和峰值减速度越大,两个制动足部接触点的平均水平GRF比越大,具有统计学意义(ρ = 0.31-0.49, p < 0.05)。比较低平均减速和峰值减速者,高减速者在两个制动步骤上的平均水平GRF比具有统计学意义上显著更高(效应值[ES] = 3.53-5.00, p < 0.05),接近动量更低(ES = 0.62和0.66)。与低进近动量者相比,高进近动量者的平均和峰值减速得分显著高于低进近动量者(ES = 0.70和0.66,p < 0.05)。练习者的目标应该是最大化水平GRF的产生,并将力更水平地定向,以获得更有效的减速。然而,更快的接近速度,特别是伴随着更大的身体质量(因此动量),可能会看到减速性能下降,因为更高的制动需求。这可能是一个不可避免的悖论,因此,减速性能必须始终考虑接近速度和动量。
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来源期刊
CiteScore
6.70
自引率
9.40%
发文量
384
审稿时长
3 months
期刊介绍: The editorial mission of The Journal of Strength and Conditioning Research (JSCR) is to advance the knowledge about strength and conditioning through research. A unique aspect of this journal is that it includes recommendations for the practical use of research findings. While the journal name identifies strength and conditioning as separate entities, strength is considered a part of conditioning. This journal wishes to promote the publication of peer-reviewed manuscripts which add to our understanding of conditioning and sport through applied exercise science.
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