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首页> 外文期刊>Journal of Biomechanics >Damping and energy dissipation in soft tissue vibrations during running
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Damping and energy dissipation in soft tissue vibrations during running

机译:跑步过程中软组织振动的阻尼和能量耗散

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It has been well accepted that the vibrations of soft tissue cannot be simulated by a single sinusoidal function. In fact, these vibrations are a combination of several vibration modes. In this study, these modes are extracted applying a recently developed method namely, partly ensemble empirical mode decomposition (PEEMD). Then, a methodology for estimating the damping properties and energy dissipation caused by damping for each mode is used. Applying this methodology on simulated signals demonstrates high accuracy. This methodology is applied to the acceleration signals of the gastrocnemius muscle during sprinting and the differences between the damping properties of different vibration modes were identified. The results were 1) the damping property of high-frequency mode was higher than that for low-frequency modes. 2) All identified modes were in under damped condition, therefore, the vibrations had an oscillatory nature. 3) The damping ratios of lower modes are about 100% increased compared to higher modes. 4) The energy dissipation occurred in lower modes were much more than that for higher mode; According to the power spectrum of the ground reaction force (GRF), which is the input force into the body, the recent finding supports the muscle tuning paradigm. It is suggested that the damping properties and energy dissipation can be used to distinguish between different running conditions (surface, fatigue, etc.) (C) 2014 Elsevier Ltd. All rights reserved.
机译:公认的是,不能通过单个正弦函数来模拟软组织的振动。实际上,这些振动是几种振动模式的组合。在这项研究中,这些模式是使用最近开发的方法提取的,即部分集成的经验模式分解(PEEMD)。然后,使用一种方法来估算每种模式的阻尼引起的阻尼特性和能量耗散。将此方法应用于模拟信号显示出很高的准确性。该方法应用于短跑期间腓肠肌的加速度信号,并确定了不同振动模式的阻尼特性之间的差异。结果是:1)高频模式的阻尼特性高于低频模式。 2)所有确定的模式都处于阻尼状态,因此,振动具有振荡性质。 3)与较高模式相比,较低模式的阻尼比提高了约100%。 4)低模式下的能量消耗比高模式下的能量消耗大得多;根据地面反作用力(GRF)的功率谱(即人体的输入力),最近的发现支持了肌肉微调范例。建议使用阻尼特性和能量耗散来区分不同的运行条件(表面,疲劳等)。(C)2014 Elsevier Ltd.保留所有权利。

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