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跟腱的体内机械行为对弹跳步态的力学、能量学和表观效率的影响。

The influence of in vivo mechanical behaviour of the Achilles tendon on the mechanics, energetics and apparent efficiency of bouncing gaits.

机构信息

Department of Neurosciences, Biomedicine and Movement Sciences, University of Verona, 37131 Verona, Italy.

出版信息

J Exp Biol. 2021 Aug 15;224(16). doi: 10.1242/jeb.242453. Epub 2021 Aug 20.

Abstract

In this study, we used kinematic, kinetic, metabolic and ultrasound analysis to investigate the role of elastic energy utilization on the mechanical and physiological demands of a movement task (hopping) that primarily involves the plantar-flexor muscles to determine the contribution of tendon work to total mechanical work and its relationship with apparent efficiency (AE) in bouncing gaits. Metabolic power (PMET) and (positive) mechanical power at the whole-body level (PMEC) were measured during hopping at different frequencies (2, 2.5, 3 and 3.5 Hz). The (positive) mechanical power produced during the Achilles tendon recoil phase (PTEN) was obtained by integrating ultrasound data with an inverse dynamic approach. As a function of hopping frequency, PMEC decreased steadily and PMET exhibited a U-shape behaviour, with a minimum at about 3 Hz. AE (PMEC/PMET) showed an opposite trend and was maximal (about 0.50) at the same frequency when PTEN was also highest. Positive correlations were observed: (i) between PTEN and AE (AE=0.22+0.15PTEN, R2=0.67, P<0.001) and the intercept of this relationship indicates the value of AE that should be expected when tendon work is nil; (ii) between AE and tendon gearing (Gt=Δmuscle-tendon unit length/Δmuscle belly length; R2=0.50, P<0.001), where a high Gt indicates that the muscle is contracting more isometrically, thus allowing the movement to be more economical (and efficient); (iii) between Gt and PTEN (R2=0.73, P<0.001), which indicates that Gt could play an important role in the tendon's capability to store and release mechanical power.

摘要

在这项研究中,我们使用运动学、动力学、代谢和超声分析来研究弹性能量利用在主要涉及跖屈肌的运动任务(跳跃)的力学和生理需求中的作用,以确定肌腱功对总机械功的贡献及其与反弹步态中表观效率(AE)的关系。在不同频率(2、2.5、3 和 3.5 Hz)下跳跃时测量整体代谢功率(PMET)和(正)机械功率(PMEC)。通过将超声数据与逆动力学方法相结合,获得跟腱反冲阶段产生的(正)机械功率(PTEN)。随着跳跃频率的增加,PMEC 逐渐稳定下降,PMET 呈 U 形变化,在约 3 Hz 时达到最小值。AE(PMEC/PMET)呈相反趋势,当 PTEN 也最高时,在相同频率下达到最大值(约 0.50)。观察到以下正相关关系:(i)PTEN 与 AE(AE=0.22+0.15PTEN,R2=0.67,P<0.001)之间存在正相关关系,该关系的截距表示当肌腱功为零时应达到的 AE 值;(ii)AE 与肌腱传动比(Gt=Δ肌肉-肌腱单元长度/Δ肌肉腹部长度;R2=0.50,P<0.001)之间存在正相关关系,其中 Gt 较高表示肌肉更等长收缩,从而使运动更经济(高效);(iii)Gt 与 PTEN(R2=0.73,P<0.001)之间存在正相关关系,这表明 Gt 可能在肌腱储存和释放机械功率的能力中发挥重要作用。

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