Department of Training and Movement Sciences, Humboldt-Universität zu Berlin, Philippstr. 13, Haus 11, 10115, Berlin, Germany.
Berlin School of Movement Science, Berlin, Germany.
Sci Rep. 2021 Mar 12;11(1):5830. doi: 10.1038/s41598-021-84847-w.
The purpose of the current study was to assess in vivo Achilles tendon (AT) mechanical loading and strain energy during locomotion. We measured AT length considering its curve-path shape. Eleven participants walked at 1.4 m/s and ran at 2.5 m/s and 3.5 m/s on a treadmill. The AT length was defined as the distance between its origin at the gastrocnemius medialis myotendinous junction (MTJ) and the calcaneal insertion. The MTJ was tracked using ultrasonography and projected to the reconstructed skin surface to account for its misalignment. Skin-to-bone displacements were assessed during a passive rotation (5°/s) of the ankle joint. Force and strain energy of the AT during locomotion were calculated by fitting a quadratic function to the experimentally measured tendon force-length curve obtained from maximum voluntary isometric contractions. The maximum AT strain and force were affected by speed (p < 0.05, ranging from 4.0 to 4.9% strain and 1.989 to 2.556 kN), yet insufficient in magnitude to be considered as an effective stimulus for tendon adaptation. Besides the important tendon energy recoil during the propulsion phase (7.8 to 11.3 J), we found a recoil of elastic strain energy at the beginning of the stance phase of running (70-77 ms after touch down) between 1.7 ± 0.6 and 1.9 ± 1.1 J, which might be functionally relevant for running efficiency.
本研究旨在评估活体跟腱(AT)在运动过程中的机械载荷和应变能。我们考虑到跟腱的曲线路径形状来测量其长度。11 名参与者在跑步机上以 1.4 m/s 的速度行走,以 2.5 m/s 和 3.5 m/s 的速度跑步。跟腱长度定义为其在腓肠肌内侧肌肌腱结合部(MTJ)的起点到跟骨止点之间的距离。使用超声跟踪 MTJ,并将其投影到重建的皮肤表面,以纠正其错位。在踝关节被动旋转(5°/s)期间评估皮肤-骨骼位移。通过将二次函数拟合到从最大自主等长收缩获得的实验测量的肌腱力-长度曲线,计算 AT 在运动过程中的力和应变能。最大 AT 应变和力受速度影响(p < 0.05,范围为 4.0 至 4.9%应变和 1.989 至 2.556 kN),但幅度不足以被认为是肌腱适应的有效刺激。除了推进阶段(7.8 至 11.3 J)重要的肌腱能量回弹外,我们还发现跑步支撑阶段(触地后 70-77 ms)开始时弹性应变能的回弹,其值在 1.7±0.6 和 1.9±1.1 J 之间,这可能与跑步效率有关。