Howe A, Campbell A, Ng L, Hall T, Hopper D
School of Physiotherapy and Exercise Science, Curtin Health Innovation Research Institute, Curtin University, Perth, Australia.
Scand J Med Sci Sports. 2015 Aug;25(4):517-24. doi: 10.1111/sms.12269. Epub 2014 Jul 2.
The purpose of this study was to compare the effects of Mulligan's tape (MT) and kinesio tape (KT) with no tape (NT) on hip and knee kinematics and kinetics during running. Twenty-nine female recreational runners performed a series of 'run-throughs' along a 10-m runway under the three taping conditions. Two force plates and a 14-camera Vicon motion analysis system (Oxford Metrics, Inc., Oxford, UK) captured kinematic and kinetic data for each dependent variable from ground contact to toe off. Comparisons of each dependent variable under three taping conditions were assessed through Statistical Package for the Social Sciences (SPSS; SPSS, Inc., Chicago, Illinois, USA; P-value < 0.01) using repeated measure analyses of variance. For each dependent variable with a P-value < 0.01, repeated measures with pairwise comparisons and Bonferroni adjustment were conducted to compare the three taping conditions. MT induced a significant reduction in anterior and posterior hip forces, knee flexion angular velocity, knee extensor moments, and hip flexion and extension moments compared with NT and KT (P = 0.001). There was no difference in hip or knee, kinematics or kinetics, between KT and NT (P = 1.000). MT appears to influence hip and knee biomechanics during running in an asymptomatic sample, whereas KT appeared to be biomechanically not different from NT.
本研究的目的是比较Mulligan贴布(MT)、肌内效贴布(KT)与不贴布(NT)对跑步过程中髋部和膝部运动学及动力学的影响。29名女性休闲跑步者在三种贴布条件下沿着10米跑道进行了一系列“跑过”测试。两个测力板和一个14摄像头的Vicon运动分析系统(牛津测量公司,英国牛津)采集了从地面接触到脚趾离地的每个因变量的运动学和动力学数据。使用社会科学统计软件包(SPSS;SPSS公司,美国伊利诺伊州芝加哥;P值<0.01)通过重复测量方差分析评估三种贴布条件下每个因变量的差异。对于每个P值<0.01的因变量,进行重复测量并进行成对比较和Bonferroni校正,以比较三种贴布条件。与NT和KT相比,MT可显著降低髋部前后向力、膝关节屈曲角速度、膝关节伸肌力矩以及髋部屈伸力矩(P = 0.001)。KT和NT在髋部或膝部的运动学或动力学方面没有差异(P = 1.000)。在无症状样本中,MT似乎会影响跑步过程中的髋部和膝部生物力学,而KT在生物力学方面似乎与NT没有差异。