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Influence of sports flooring and shoes on impact forces and performance during jump tasks

机译:运动地板和鞋子对跳跃任务中冲击力和性能的影响

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摘要

We aim to determine the influence of sports floorings and sports shoes on impact mechanics and performance during standardised jump tasks. Twenty-one male volunteers performed ankle jumps (four consecutive maximal bounds with very dynamic ankle movements) and multi-jumps (two consecutive maximal counter-movement jumps) on force plates using minimalist and cushioned shoes under 5 sports flooring (SF) conditions. The shock absorption properties of the SF, defined as the proportion of peak impact force absorbed by the tested flooring when compared with a concrete hard surface, were: SF0 = 0% (no flooring), SF1 = 19%, SF2 = 26%, SF3 = 37% and SF4 = 45%. Shoe and flooring effects were compared using 2x5 repeated-measures ANOVA with post-hoc Bonferroni-corrected comparisons. A significant interaction between SF and shoe conditions was found for VILR only (p = 0.003). In minimalist shoes, SF influenced Vertical Instantaneous Loading Rate (VILR) during ankle jumps (p = 0.006) and multi-jumps (p<0.001), in accordance with shock absorption properties. However, in cushioned shoes, SF influenced VILR during ankle jumps only (p<0.001). Contact Time was the only additional variable affected by SF, but only during multi-jumps in minimalist shoes (p = 0.037). Cushioned shoes induced lower VILR (p<0.001) and lower Contact Time (p≤0.002) during ankle jumps and multi-jumps compared to minimalist shoes. During ankle jumps, cushioned shoes induced greater Peak Vertical Ground Reaction Force (PVGRF, p = 0.002), greater Vertical Average Loading Rate (p<0.001), and lower eccentric (p = 0.008) and concentric (p = 0.004) work. During multi-jumps, PVGRF was lower (p<0.001) and jump height was higher (p<0.001) in cushioned compared to minimalist shoes. In conclusion, cushioning influenced impact forces during standardised jump tasks, whether it was provided by the shoes or the sports flooring. VILR is the variable that was the most affected.
机译:我们旨在确定运动地板和运动鞋在标准化跳跃任务中对冲击力学和性能的影响。 21名男性志愿者在5种运动地板(SF)的条件下,使用极简和减震的鞋子在力板上进行了踝跳(连续的四个最大界限,并且具有非常动态的踝关节运动)和多次跳动(两个连续的最大反向运动跳跃)。 SF的减震性能定义为:与混凝土硬质表面相比,被测地板吸收的峰值冲击力的比例为:SF0 = 0%(无地板),SF1 = 19%,SF2 = 26%, SF3 = 37%,SF4 = 45%。使用2x5重复测量方差分析与事后Bonferroni校正后的比较,比较了鞋子和地板的影响。仅对于VILR,发现SF和鞋条件之间存在显着的相互作用(p = 0.003)。在极简主义的鞋子中,SF会根据减震特性影响踝跳(p = 0.006)和多跳(p <0.001)期间的垂直瞬时负荷率(VILR)。但是,在缓冲鞋中,SF仅在脚踝跳动时影响VILR(p <0.001)。接触时间是唯一受SF影响的变量,但仅在极简运动鞋多次跳跃时才有效(p = 0.037)。与极简主义鞋相比,软垫鞋在踝跳和多次跳起时可降低VILR(p <0.001)和降低接触时间(p≤0.002)。在脚踝跳动过程中,缓冲的鞋子会产生更大的垂直地面反作用力峰值(PVGRF,p = 0.002),更大的垂直平均负荷率(p <0.001),以及较低的偏心率(p = 0.008)和同心度(p = 0.004)。与极简运动鞋相比,缓震中的PVGRF较低(p <0.001),跳跃高度较高(p <0.001)。总之,缓冲是影响标准跳动作中的冲击力的方法,无论是鞋子还是运动地板。 VILR是受影响最大的变量。

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