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在周期性踝关节弯曲运动期间人体内侧腓肠肌中的共振

Resonance in the human medial gastrocnemius muscle during cyclic ankle bending exercise.

作者信息

Takeshita Daisuke, Shibayama Akira, Muraoka Tetsuro, Muramatsu Tadashi, Nagano Akinori, Fukunaga Tetsuo, Fukashiro Senshi

机构信息

Department of Life Sciences, University of Tokyo, Meguro-ku, Tokyo, Japan.

出版信息

J Appl Physiol (1985). 2006 Jul;101(1):111-8. doi: 10.1152/japplphysiol.01084.2005. Epub 2006 Feb 23.

Abstract

We investigated the behavior of the muscle tendon unit (MTU) of the medial gastrocnemius muscle during cyclic ankle bending exercise at eight different frequencies (ranging from 1.33 to 3.67 Hz). The changes in the length of fascicle in the muscle during the exercises were determined by real-time ultrasound imaging. The coordinates of anatomical references and the ground reaction force were determined from video recording and a force plate, respectively. The length change of the MTU (the distance from the origin to insertion of the muscle) was calculated from changes in the knee and ankle joint angles. It was found that the amplitude ratio and phase difference between the fascicle and MTU lengths were both dependent on the movement frequency. At lower frequencies, the fascicle lengths varied almost in phase with the MTU length, whereas they varied out of phase at the higher frequencies. At intermediate frequency, the amplitude of the fascicle became very small compared with that of the MTU, which is considered resonance. We constructed a mechanical model of the MTU based on a notion of forced oscillation in a mass-spring system. The obtained data were well explained by the model. It was concluded that the behavior of the MTU highly depends on the movement frequency due to the viscoelasticity of the MTU.

摘要

我们研究了在八个不同频率(范围从1.33至3.67赫兹)的周期性踝关节弯曲运动期间,内侧腓肠肌的肌肉肌腱单元(MTU)的行为。运动期间肌肉中肌束长度的变化通过实时超声成像来确定。解剖学参考点的坐标和地面反作用力分别通过视频记录和测力板来确定。MTU的长度变化(从肌肉起点到止点的距离)根据膝关节和踝关节角度的变化来计算。结果发现,肌束长度与MTU长度之间的振幅比和相位差均取决于运动频率。在较低频率时,肌束长度与MTU长度几乎同相变化,而在较高频率时它们异相变化。在中间频率时,与MTU相比,肌束的振幅变得非常小,这被认为是共振。我们基于质量 - 弹簧系统中的受迫振荡概念构建了MTU的力学模型。该模型很好地解释了所获得的数据。得出的结论是,由于MTU的粘弹性,MTU的行为高度依赖于运动频率。

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