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响应不同冲击力时肌肉活动的变化会影响软组织隔室的力学特性。

Changes in muscle activity in response to different impact forces affect soft tissue compartment mechanical properties.

作者信息

Boyer Katherine A, Nigg Benno M

机构信息

Division of Biomechanical Engineering, Department of Mechanical Engineering, 219 Durand Bldg., 496 Lomita Mall, Stanford University, Stanford, CA 94305-4038, USA.

出版信息

J Biomech Eng. 2007 Aug;129(4):594-602. doi: 10.1115/1.2746384.

Abstract

Electromyographic (EMG) activity is associated with several tasks prior to landing in walking and running including positioning the leg, developing joint stiffness and possibly control of soft tissue compartment vibrations. The concept of muscle tuning suggests one reason for changes in muscle activity pattern in response to small changes in impact conditions, if the frequency content of the impact is close to the natural frequency of the soft tissue compartments, is to minimize the magnitude of soft tissue compartment vibrations. The mechanical properties of the soft tissue compartments depend in part on muscle activations and thus it was hypothesized that changes in the muscle activation pattern associated with different impact conditions would result in a change in the acceleration transmissibility to the soft tissue compartments. A pendulum apparatus was used to systematically administer impacts to the heel of shod male participants. Wall reaction forces, EMG of selected leg muscles, soft tissue compartment and shoe heel cup accelerations were quantified for two different impact conditions. The transmissibility of the impact acceleration to the soft tissue compartments was determined for each subject/soft tissue compartment/shoe combination. For this controlled impact situation it was shown that changes in the damping properties of the soft tissue compartments were related to changes in the EMG intensity and/or mean frequency of related muscles in response to a change in the impact interface conditions. These results provide support for the muscle tuning idea--that one reason for the changes in muscle activity in response to small changes in the impact conditions may be to minimize vibrations of the soft tissue compartments that are initiated at heel-strike.

摘要

肌电图(EMG)活动与行走和跑步着地前的多项任务相关,包括腿部定位、关节僵硬程度的发展以及可能对软组织隔室振动的控制。肌肉调谐的概念表明,若冲击的频率成分接近软组织隔室的固有频率,那么肌肉活动模式因冲击条件的微小变化而改变的一个原因是将软组织隔室振动的幅度降至最低。软组织隔室的力学特性部分取决于肌肉激活,因此有人推测,与不同冲击条件相关的肌肉激活模式变化会导致传递至软组织隔室的加速度变化。使用摆锤装置对穿有鞋子的男性参与者的脚后跟进行系统冲击。针对两种不同的冲击条件,对壁反作用力、选定腿部肌肉的肌电图、软组织隔室以及鞋跟杯加速度进行了量化。针对每个受试者/软组织隔室/鞋子组合,确定了冲击加速度向软组织隔室的传递率。对于这种受控冲击情况,研究表明,软组织隔室阻尼特性的变化与肌电图强度和/或相关肌肉的平均频率变化有关,这是对冲击界面条件变化的响应。这些结果为肌肉调谐观点提供了支持,即肌肉活动因冲击条件的微小变化而改变的一个原因可能是将脚跟触地时引发的软组织隔室振动降至最低。

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