起跳距离如何影响垂直跳跃的力-速度分布和表现?

IF 1.3 4区 医学 Q4 ENGINEERING, BIOMEDICAL
Journal of Applied Biomechanics Pub Date : 2025-02-14 Print Date: 2025-04-01 DOI:10.1123/jab.2024-0194
Félicie Pommerell, Sébastien Boyas, Pierre Samozino, Baptiste Morel, Jérémie Begue, Abderrahmane Rahmani, Nicolas Peyrot
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引用次数: 0

摘要

在许多运动项目中,练习者必须在时间限制下达到最大跳高(hmax)。这需要减少反动作深度,从而减少推离距离(hPO)。本研究的目的是研究hPO如何影响力-速度(F-v)曲线(F¯0,v¯0,P¯max和SFv)和性能。11名参与者(年龄:26岁,身高:175.6 [11.2]cm,体重:76 bb0 kg;深蹲1RM: 129 b[34] kg)做最大的反向跳跃。在不同的负荷条件下(体重[BW]、体重+ 8 kg、体重+ 17 kg、体重+ 40%1RM、体重+ 70%1RM),采用动力学和运动学测量来评估3种不同hPO条件下(hPO- small、hPO- medium、hPO- large)的个体F-v曲线。结果表明,在不同的hPO条件下,F¯0和P¯max会发生变化,而v¯0保持不变。较低的hPO导致F¯0和P¯max显著升高。这些变化导致更陡峭的SFv,导致更多的力取向轮廓,更低的最佳SFv和更大的F-v不平衡。降低hPO和改变F-v剖面在一定程度上导致hmax的降低。性能是hPO, P¯max和F-v不平衡之间的折衷,所有这些都受反向移动深度的影响。这就解释了为什么为了满足时间限制而减少反移动深度可能会降低性能。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
How Does Push-Off Distance Influence Force-Velocity Profile and Performance During Vertical Jumping?

In many sports, practitioners must reach their maximal jump height (hmax) under time constraints. This requires a reduction of the countermovement depth and so of the push-off distance (hPO). The purpose of this study was to investigate how hPO influences force-velocity (F-v) profiles (F¯0, v¯0, P¯max, and SFv) and performance. Eleven participants (age: 26 [5] y, height: 175.6 [11.2] cm, mass: 76 [15] kg; squat 1RM: 129 [34] kg) performed maximal countermovement jumps. Kinetic and kinematic measurements were used to assess individual F-v profiles for 3 different hPO conditions (hPO-SMALL, hPO-MEDIUM, hPO-LARGE) from countermovement jumps performed under different load conditions (bodyweight [BW], BW + 8 kg, BW + 17 kg, BW + 40%1RM, BW + 70%1RM). Results indicated that F¯0 and P¯max changed across hPO conditions, while v¯0 remained constant. A lower hPO led to a significantly higher F¯0 and P¯max. These changes resulted in a steeper SFv leading to a more force-oriented profile, a lower optimal SFv and a greater F-v imbalance. Reducing hPO and modifying F-v profile led, to some extent, to a reduction in hmax. Performance is a compromise between hPO, P¯max, and F-v imbalance, all influenced by countermovement depth. This explains why reducing countermovement depth to meet time constraint may lower performance.

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来源期刊
Journal of Applied Biomechanics
Journal of Applied Biomechanics 医学-工程:生物医学
CiteScore
2.00
自引率
0.00%
发文量
47
审稿时长
6-12 weeks
期刊介绍: The mission of the Journal of Applied Biomechanics (JAB) is to disseminate the highest quality peer-reviewed studies that utilize biomechanical strategies to advance the study of human movement. Areas of interest include clinical biomechanics, gait and posture mechanics, musculoskeletal and neuromuscular biomechanics, sport mechanics, and biomechanical modeling. Studies of sport performance that explicitly generalize to broader activities, contribute substantially to fundamental understanding of human motion, or are in a sport that enjoys wide participation, are welcome. Also within the scope of JAB are studies using biomechanical strategies to investigate the structure, control, function, and state (health and disease) of animals.
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