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Length and activation dependent variations in muscle shear wave speed

机译:长度和激活相关的肌肉剪切波速度变化

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摘要

Muscle stiffness is known to vary as a result of a variety of disease states, yet current clinical methods for quantifying muscle stiffness have limitations including cost and availability. We investigated the capability of shear wave elastography (SWE) to measure variations in gastrocnemius shear wave speed induced via active contraction and passive stretch. Ten healthy young adults were tested. Shear wave speeds were measured using a SWE transducer positioned over the medial gastrocnemius at ankle angles ranging from maximum dorsiflexion to maximum plantarflexion. Shear wave speeds were also measured during voluntary plantarflexor contractions at a fixed ankle angle. Average shear wave speed increased significantly from 2.6 m/s to 5.6 m/s with passive dorsiflexion and the knee in an extended posture, but did not vary with dorsiflexion when the gastrocnemius was shortened in a flexed knee posture. During active contractions, shear wave speed monotonically varied with the net ankle moment generated, reaching 8.3 m/s in the maximally contracted condition. There was a linear correlation between shear wave speed and net ankle moment in both the active and passive conditions; however, the slope of this linear relationship was significantly steeper for the data collected during passive loading conditions. The results show that SWE is a promising approach for quantitatively assessing changes in mechanical muscle loading. However, the differential effect of active and passive loading on shear wave speed makes it important to carefully consider the relevant loading conditions in which to use SWE to characterize in vivo muscle properties.
机译:已知肌肉僵硬度会因各种疾病状态而变化,但是目前用于量化肌肉僵硬度的临床方法存在一定的局限性,包括成本和可用性。我们调查了剪切波弹性成像(SWE)的能力,以测量通过主动收缩和被动拉伸引起的腓肠肌剪切波速度的变化。测试了十名健康的年轻人。使用位于上腓肠肌上的SWE传感器以最大背屈到最大plant屈的踝角测量剪切波速度。在自愿的plant屈肌收缩过程中也以固定的踝角测量了剪切波的速度。被动背屈和伸展姿势的膝盖时,平均剪切波速度从2.6 m / s显着提高到5.6 m / s,但是在屈膝姿势下缩短腓肠肌时,平均剪切波速度没有变化。在主动收缩过程中,剪切波速度随所产生的净踝力矩而单调变化,在最大收缩状态下达到8.3 m / s。在主动和被动条件下,剪切波速度和净踝力矩之间存在线性关系。但是,对于被动加载条件下收集的数据,此线性关系的斜率要陡得多。结果表明,SWE是定量评估机械肌肉负荷变化的一种有前途的方法。然而,主动和被动载荷对剪切波速度的不同影响使得重要的是要仔细考虑使用SWE表征体内肌肉特性的相关载荷条件。

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