用于增强式弹跳训练的钟摆装置的可靠性及其生物力学参数与负载匹配垂直落体跳的比较

V. Panoutsakopoulos, I. Kollias
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引用次数: 0

摘要

在进行增力训练时,无法控制身体重心(BCM)初始条件,这是一个限制因素,无法准确比较垂直和水平的跳跃。本研究的目的是提出一种方法学方法,用于检查垂直落差跳(VDJ)和增力式摆摆反弹跳(HPRJ)中BCM初始条件。采用由两个力板组成的系统对VDJ进行评价。搭建了一个双线摆,配有角计和加速度计,用于评价HPRJ。通过录像(100 Hz)获得两种跳跃方式的运动学参数。38名体力活跃的年轻男性在撞击瞬间(KEI)以相同的BCM动能执行VDJ和HPRJ。结果显示,在HPRJ下,参与者产生了更高的功率和更低的力输出(p < 0.01)。VDJ组的力发展速率较大,而HPRJ组的髋关节运动速率较小。所提出的方法的使用提供了可靠地确定在检查跳跃执行期间确切的BCM释放高度的手段。这提供了KEI量的准确测定,是计算增强运动负荷的主要参数。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Reliability of a Pendulum Apparatus for the Execution of Plyometric Rebound Exercises and the Comparison of Their Biomechanical Parameters with Load-Matching Vertical Drop Jumps
The inability to control the body center of mass (BCM) initial conditions, when executing plyometric exercises, comprises a restrictive factor to accurately compare jumps executed vertically and horizontally. The purpose of the study was to present a methodological approach for the examination of BCM initial conditions during vertical drop jumps (VDJ) and plyometric rebound jumps performed with a pendulum swing (HPRJ). A system consisting of two force plates was used for the evaluation of VDJ. A bifilar pendulum, equipped with a goniometer and accelerometer, was constructed for the evaluation of the HPRJ. Kinematic parameters from both jump modalities were obtained by means of videography (100 Hz). Thirty-eight physically active young males executed VDJ and HPRJ with identical BCM kinetic energy at the instant of impact (KEI). Results revealed that participants produced higher power and lower force outputs at HPRJ (p < 0.01). The rate of force development was larger in VDJ, while hip movement was less in HPRJ. The use of the presented methodology provided the means to reliably determine the exact BCM release height during the execution of the examined jumps. This provided an accurate determination of the amount of KEI, being the main parameter of calculating load during plyometric exercise.
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CiteScore
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