Mündermann Anne, Wakeling James M, Nigg Benno M, Humble R Neil, Stefanyshyn Darren J
Division of Biomechanical Engineering, Department of Mechanical Engineering, Stanford University, Stanford, CA 94305-4038, USA.
Gait Posture. 2006 Apr;23(3):295-302. doi: 10.1016/j.gaitpost.2005.03.004. Epub 2005 Jun 8.
The purpose of this study was to quantify the effects of selected foot orthoses on muscle activity in the lower extremity during running. Nine male and 12 female recreational runners, clinically and functionally classified as 'pronators', volunteered for this study and performed over-ground running trials at 4m/s in each of four experimental conditions: control, posting, molding, and posting & molding. Electromyographic (EMG) signals were recorded from seven lower extremity muscles. Wavelet analysis was performed to obtain EMG intensities in two frequency bands that were averaged for the pre-heel-strike and post-heel-strike intervals and for 30-100% of stance phase. Posting and custom-molding of foot orthoses increased the global EMG intensity of most muscles of the lower extremity for the stance phase of running (P < 0.05). The increases in EMG intensity were greater in the high- than in the low-frequency bands for some lower extremity muscles (P < 0.05). The effects on muscle activity of posting and custom-molding of foot orthoses differed between the three phases of running gait. The three tested foot orthoses did affect lower extremity muscle activity differently and these effects were specific to the phases of running gait. Combinations of increased requirements of controlling joint motion and minimizing soft tissue vibrations may have led to greater increases in shank muscle activity for the posted condition. The substantial changes in EMG due to orthotic interventions found in this study documents the importance of the study of muscle activity as a reaction to shoe inserts and foot orthoses.
本研究的目的是量化特定足部矫形器对跑步时下肢肌肉活动的影响。9名男性和12名女性休闲跑步者,临床和功能上被归类为“内旋者”,自愿参与本研究,并在四种实验条件下以4m/s的速度进行地面跑步试验:对照、加垫、塑形以及加垫和塑形。从下肢的七块肌肉记录肌电图(EMG)信号。进行小波分析以获得两个频带中的EMG强度,这些强度在足跟撞击前和足跟撞击后间隔以及站立期的30 - 100%进行平均。足部矫形器的加垫和定制塑形增加了跑步站立期下肢大多数肌肉的整体EMG强度(P < 0.05)。对于一些下肢肌肉,高频带中的EMG强度增加幅度大于低频带(P < 0.05)。足部矫形器的加垫和定制塑形对肌肉活动的影响在跑步步态的三个阶段有所不同。三种测试的足部矫形器对下肢肌肉活动的影响各不相同,且这些影响特定于跑步步态的阶段。控制关节运动和最小化软组织振动的需求增加的组合可能导致加垫条件下小腿肌肉活动有更大增加。本研究中发现的由于矫形干预导致的EMG的显著变化证明了将肌肉活动作为对鞋垫和足部矫形器反应的研究的重要性。