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首页> 外文期刊>Journal of Biomechanics >Tissue vibration in prolonged running.
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Tissue vibration in prolonged running.

机译:长时间运行会使组织振动。

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The impact force in heel-toe running initiates vibrations of soft-tissue compartments of the leg that are heavily dampened by muscle activity. This study investigated if the damping and frequency of these soft-tissue vibrations are affected by fatigue, which was categorized by the time into an exhaustive exercise. The hypotheses were tested that (H1) the vibration intensity of the triceps surae increases with increasing fatigue and (H2) the vibration frequency of the triceps surae decreases with increasing fatigue. Tissue vibrations of the triceps surae were measured with tri-axial accelerometers in 10 subjects during a run towards exhaustion. The frequency content was quantified with power spectra and wavelet analysis. Maxima of local vibration intensities were compared between the non-fatigued and fatigued states of all subjects. In axial (i.e. parallel to the tibia) and medio-lateral direction, most local maxima increased with fatigue (supporting the first hypothesis). In anterior-posterior direction no systematic changes were found. Vibration frequency was minimally affected by fatigue and frequency changes did not occur systematically, which requires the rejection of the second hypothesis. Relative to heel-strike, the maximum vibration intensity occurred significantly later in the fatigued condition in all three directions. With fatigue, the soft tissue of the triceps surae oscillated for an extended duration at increased vibration magnitudes, possibly due to the effects of fatigue on type II muscle fibers. Thus, the protective mechanism of muscle tuning seems to be reduced in a fatigued muscle and the risk of potential harm to the tissue may increase.
机译:脚后跟奔跑中的冲击力会引发腿部软组织腔室的振动,该振动会因肌肉活动而大大减弱。这项研究调查了这些软组织振动的阻尼和频率是否受到疲劳的影响,疲劳可以按照时间分类为彻底运动。检验假设,(H1)肱三头肌的振动强度随着疲劳的增加而增加,(H2)肱三头肌的振动频率随着疲劳的增加而减小。在疲惫的过程中,用三轴加速度计在10位受试者中测量了肱三头肌的组织振动。通过功率谱和小波分析来量化频率含量。比较了所有受试者在非疲劳状态和疲劳状态下的局部振动强度最大值。在轴向(即平行于胫骨)和中外侧方向上,大多数局部最大值随着疲劳而增加(支持第一个假设)。在前后方向上未发现系统变化。振动频率受疲劳的影响最小,并且频率变化没有系统地发生,因此需要拒绝第二种假设。相对于脚跟撞击,最大的振动强度在疲劳状态下沿所有三个方向显着地出现。对于疲劳,肱三头肌的软组织会在振动幅度增加的情况下长时间振荡,这可能是由于疲劳对II型肌纤维的影响。因此,似乎在疲劳的肌肉中肌肉调节的保护机制似乎减少了,并且可能增加对组织的潜在伤害的风险。

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