膝关节包裹增加扭矩生产在被动等距膝关节伸展

IF 1.2 Q3 SPORT SCIENCES
Joseph A. Laudato, Brandon M. Gibson, Brandon A. Miller, C. Martin, Cody Dulaney, Cardyl P. Trionfante, Adam R. Jajtner
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引用次数: 0

摘要

护膝(KW)可以在后蹲过程中用作人体工程学辅助工具,以增加训练量和负荷。先前的研究已经检查了后蹲过程中的遗留效应,尽管由于KWs在膝盖产生的扭矩量仍然未知。因此,本研究考察了KWs对被动扭矩产生的影响及其与膝围的关系。九名接受阻力训练的男子在九个不同角度(70°、75°、80°、85°、90°、95°、100°、105°和110°)进行了两次5秒的被动等长膝关节伸展(KW)和无(UW)护膝。数据通过双向重复测量ANOVA进行分析,以评估条件之间的差异,而Pearson的乘积矩相关性用于评估扭矩产生与膝围之间的关系。观察到被动扭矩的显著相互作用,揭示了以KW为单位的所有角度之间的差异(P≤.05),而UW过程中的差异仅在大于90°的角度观察到(P≤.05)。配对样本t检验表明,除70°外,每个角度的条件都存在差异(P≤0.05)。膝围与任何角度的扭矩产生无关(r≤.411,P>.272)。这些结果证明了KW在伸展,与膝盖周长无关。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Knee wraps increase torque production during passive isometric knee extension
Knee wraps (KW) can be used as an ergogenic aid during the back squat to increase training volume and load. Previous investigations have examined carryover effect during the back squat, though the amount of torque produced at the knee due to the KWs remains unknown. Therefore, this investigation examined the influence of KWs on passive torque production, and its relationship to knee circumference. Nine resistance trained men performed two, 5 second passive isometric knee extensions with (KW) and without (UW) knee wraps at nine different angles (70°, 75°, 80°, 85°, 90°, 95°, 100°, 105°, and 110°). Data were analyzed via two‐way repeated measures ANOVA to assess differences between conditions, while Pearson's product‐moment correlations were used to assess the relationship between torque production and knee circumference. A significant interaction was observed for passive torque, revealing differences between all angles in KW (P ≤ .05), while differences during UW were only observed at angles greater than 90° (P ≤ .05). Paired samples t‐tests indicated differences between conditions at every angle except 70° (P ≤ .05). Knee circumference was not correlated to torque production at any angle (r = ≤ .411, P > .272). These results demonstrate the applicability of KW to passively increase torque produced at the knee during extension, independent of knee circumference.
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