Sánchez-Sixto Alberto, McMahon John J, Floría Pablo
Department of Sport, CEU Cardenal Spínola University, Bormujos, Spain.
Physical Performance & Sports Research Center, Pablo de Olavide University, Seville, Spain.
Sports Biomech. 2024 Feb;23(2):211-221. doi: 10.1080/14763141.2020.1836252. Epub 2021 Jan 6.
This study aimed to determine the effects of different verbal instructions, intended to affect the countermovement jump (CMJ) execution time, on the reactive strength index modified (RSI) and the time-series waveforms. Thirteen male basketball players performed six CMJs on a force plate with two different verbal instructions: 'jump as high as possible' (CMJhigh) and 'jump as high and as fast as possible' (CMJfast). Force-, power-, velocity-, and displacement-series waveforms, RSI and jump height were compared between conditions using statistical parametric mapping procedures. CMJfast showed greater values in RSI ( = 0.002) despite no differences in jump height ( = 0.345). Unweighting force (between 18% and 33% of total time) was lower in the CMJfast compared to CMJhigh. Larger force (between 53% and 63% of total time), velocity (between 31% and 48% of total time) and power (between 43% and 56% of total time) were found in the CMJfast compared to CMJhigh. These findings suggest that commanding athletes to jump as high and fast as possible increases rapid force production. Additionally, the results highlight the relevance of the countermovement phase in jumping and show that RSI could increase without power output modifications during propulsion, despite previous studies having reported positive associations between RSI propulsion power.
本研究旨在确定不同口头指令对改良反应力量指数(RSI)和时间序列波形的影响,这些指令旨在影响反向纵跳(CMJ)的执行时间。13名男性篮球运动员在测力板上进行了6次CMJ,采用两种不同的口头指令:“尽可能跳高”(CMJhigh)和“尽可能高且尽可能快地跳”(CMJfast)。使用统计参数映射程序比较了不同条件下的力、功率、速度和位移序列波形、RSI和跳跃高度。尽管跳跃高度没有差异(P = 0.345),但CMJfast的RSI值更高(P = 0.002)。与CMJhigh相比,CMJfast的失重力量(占总时间的18%至33%)更低。与CMJhigh相比,CMJfast在更大的力(占总时间的53%至63%)、速度(占总时间的31%至48%)和功率(占总时间的43%至56%)下出现。这些发现表明,要求运动员尽可能高且快地跳可以增加快速力量产生。此外,结果突出了反向运动阶段在跳跃中的相关性,并表明在推进过程中RSI可以在不改变功率输出的情况下增加,尽管先前的研究报告了RSI与推进功率之间存在正相关。