Department of Kinesiology and Nutrition Sciences, Biomechanics Laboratory, University of Nevada Las Vegas, Las Vegas, Nevada.
Department of Kinesiology and Sport Management, Human Performance Laboratory, Texas Tech University, Lubbock, TX.
J Strength Cond Res. 2018 Jan;32(1):248-254. doi: 10.1519/JSC.0000000000002160.
Barker, LA, Harry, JR, and Mercer, JA. Relationships between countermovement jump ground reaction forces and jump height, reactive strength index, and jump time. J Strength Cond Res 32(1): 248-254, 2018-The purpose of this study was to determine the relationship between ground reaction force (GRF) variables to jump height, jump time, and the reactive strength index (RSI). Twenty-six, Division-I, male, soccer players performed 3 maximum effort countermovement jumps (CMJs) on a dual-force platform system that measured 3-dimensional kinetic data. The trial producing peak jump height was used for analysis. Vertical GRF (Fz) variables were divided into unloading, eccentric, amortization, and concentric phases and correlated with jump height, RSI (RSI = jump height/jump time), and jump time (from start to takeoff). Significant correlations were observed between jump height and RSI, concentric kinetic energy, peak power, concentric work, and concentric displacement. Significant correlations were observed between RSI and jump time, peak power, unload Fz, eccentric work, eccentric rate of force development (RFD), amortization Fz, amortization time, second Fz peak, average concentric Fz, and concentric displacement. Significant correlations were observed between jump time and unload Fz, eccentric work, eccentric RFD, amortization Fz, amortization time, average concentric Fz, and concentric work. In conclusion, jump height correlated with variables derived from the concentric phase only (work, power, and displacement), whereas Fz variables from the unloading, eccentric, amortization, and concentric phases correlated highly with RSI and jump time. These observations demonstrate the importance of countermovement Fz characteristics for time-sensitive CMJ performance measures. Researchers and practitioners should include RSI and jump time with jump height to improve their assessment of jump performance.
巴克尔,LA,哈里,JR 和默瑟,JA。反跳跳的地面反作用力与跳高技术、反应强度指数和跳时的关系。J 力量与条件研究 32(1):248-254,2018 年-本研究的目的是确定地面反作用力(GRF)变量与跳高技术、跳时和反应强度指数(RSI)之间的关系。26 名,甲级,男性,足球运动员在双力平台系统上进行了 3 次最大努力的反跳跳(CMJ),该系统测量了 3 维动力学数据。使用产生峰值跳跃高度的试验进行分析。垂直 GRF(Fz)变量分为卸载、偏心、缓冲和向心阶段,并与跳跃高度、RSI(RSI=跳跃高度/跳跃时间)和跳跃时间(从开始到起飞)相关。观察到跳跃高度与 RSI、向心动能、峰值功率、向心功和向心位移之间存在显著相关性。观察到 RSI 与跳跃时间、峰值功率、卸载 Fz、偏心功、偏心力发展率(RFD)、缓冲 Fz、缓冲时间、第二 Fz 峰值、平均向心 Fz 和向心位移之间存在显著相关性。观察到跳跃时间与卸载 Fz、偏心功、偏心 RFD、缓冲 Fz、缓冲时间、平均向心 Fz 和向心功之间存在显著相关性。总之,跳跃高度仅与向心阶段的变量相关(功、功率和位移),而卸载、偏心、缓冲和向心阶段的 Fz 变量与 RSI 和跳跃时间高度相关。这些观察结果表明,反跳 Fz 特征对时间敏感的 CMJ 性能测量很重要。研究人员和从业者应将 RSI 和跳跃时间与跳跃高度结合起来,以提高他们对跳跃性能的评估。