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利用步态和等长收缩的尸体模拟对原位跟腱中剪切波速度-应力关系进行校准。

Calibration of the shear wave speed-stress relationship in in situ Achilles tendons using cadaveric simulations of gait and isometric contraction.

作者信息

Martin Jack A, Kindig Matthew W, Stender Christina J, Ledoux William R, Thelen Darryl G

机构信息

Department of Materials Science and Engineering , University of Wisconsin-Madison, United States; Department of Mechanical Engineering, University of Wisconsin-Madison, United States; Department of Orthopaedics and Rehabilitation, University of Wisconsin-Madison, United States.

RR&D Center for Limb Loss and MoBility, VA Puget Sound Health Care System, United States.

出版信息

J Biomech. 2020 Jun 9;106:109799. doi: 10.1016/j.jbiomech.2020.109799. Epub 2020 Apr 20.

Abstract

It has been shown that shear wave speed is directly dependent on axial stress in ex vivo tendons. Hence, a wave speed sensor could be used to track tendon loading during movement. However, adjacent soft tissues and varying joint postures may affect the wave speed-load relationship for intact tendons. The purpose of this study was to determine whether the proportional relationship between squared wave speed and stress holds for in situ cadaveric Achilles tendons, to evaluate whether this relationship is affected by joint angle, and to assess potential calibration techniques. Achilles tendon wave speed and loading were simultaneously measured during cadaveric simulations of gait and isometric contractions performed in a robotic gait simulator. Squared wave speed and axial stress were highly correlated during isometric contraction at all ankle postures (R = 0.98) and during simulations of gait (R = 0.92). Ankle plantarflexion angle did not have a consistent effect on the constant of proportionality (p = 0.217), but there was a significant specimen-angle interaction effect (p < 0.001). Wave speed-based predictions of tendon stress were most accurate (average RMS error = 11% of maximum stress) when calibrating to isometric contractions performed in a dorsiflexed posture that resembled the posture at peak Achilles loading during gait. The results presented here show that the linear relationship between tendon stress and squared shear wave speed holds for a case resembling in vivo conditions, and that calibration during an isometric task can yield accurate predictions of tendon loading during a functional task.

摘要

研究表明,在离体肌腱中,剪切波速度直接取决于轴向应力。因此,波速传感器可用于在运动过程中跟踪肌腱负荷。然而,相邻的软组织和不同的关节姿势可能会影响完整肌腱的波速-负荷关系。本研究的目的是确定波速平方与应力之间的比例关系是否适用于原位尸体跟腱,评估这种关系是否受关节角度影响,并评估潜在的校准技术。在机器人步态模拟器中进行的尸体步态模拟和等长收缩过程中,同时测量跟腱波速和负荷。在所有踝关节姿势下的等长收缩过程中(R = 0.98)以及步态模拟过程中(R = 0.92),波速平方与轴向应力高度相关。踝关节跖屈角度对比例常数没有一致的影响(p = 0.217),但存在显著的标本-角度交互作用(p < 0.001)。当校准到在背屈姿势下进行的等长收缩时,基于波速的肌腱应力预测最为准确(平均均方根误差 = 最大应力的11%),该背屈姿势类似于步态中跟腱负荷峰值时的姿势。此处呈现的结果表明,在类似于体内条件的情况下,肌腱应力与剪切波速平方之间的线性关系成立,并且在等长任务期间进行校准可以对功能任务期间的肌腱负荷做出准确预测。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/eab8/7405430/6afda75b9523/nihms-1597297-f0001.jpg

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