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比目鱼肌和跟腱的剩余长度在不同的踝关节角度下会发生变化。

Slack length of gastrocnemius medialis and Achilles tendon occurs at different ankle angles.

机构信息

University of Nantes, UFR STAPS, Laboratory "Motricité, Interactions, Performance" (EA 4334), Nantes, France; The University of Queensland, NHMRC Centre of Clinical Research Excellence in Spinal Pain, Injury and Health, School of Health and Rehabilitation Sciences, Brisbane, Australia.

出版信息

J Biomech. 2013 Sep 27;46(14):2534-8. doi: 10.1016/j.jbiomech.2013.07.015. Epub 2013 Jul 26.

Abstract

Although muscle-tendon slack length is a crucial parameter used in muscle models, this is one of the most difficult measures to estimate in vivo. The aim of this study was to determine the onset of the rise in tension (i.e., slack length) during passive stretching in both Achilles tendon and gastrocnemius medialis. Muscle and tendon shear elastic modulus was measured by elastography (supersonic shear imaging) during passive plantarflexion (0° and 90° of knee angle, 0° representing knee fully extended, in a random order) in 9 participants. The within-session repeatability of the determined slack length was good at 90° of knee flexion (SEM=3.3° and 2.2° for Achilles tendon and gastrocnemius medialis, respectively) and very good at 0° of knee flexion (SEM=1.9° and 1.9° for Achilles tendon and gastrocnemius medialis, respectively). The slack length of gastrocnemius medialis was obtained at a significantly lower plantarflexed angle than for Achilles tendon at both 0° (P<0.0001; mean difference=19.4±3.8°) and 90° of knee flexion (P<0.0001; mean difference=25.5±7.6°). In conclusion, this study showed that the joint angle at which the tendon falls slack can be experimentally determined using supersonic shear imaging. The slack length of gastrocnemius medialis and Achilles tendon occurred at different joint angles. Although reporting this result is crucial to a better understanding of muscle-tendon interactions, further experimental investigations are required to explain this result.

摘要

尽管肌肉-肌腱松弛长度是肌肉模型中一个至关重要的参数,但这也是活体中最难估计的参数之一。本研究旨在确定在被动伸展过程中跟腱和腓肠肌内侧头的张力(即松弛长度)开始增加的起始点。在 9 名参与者中,通过超声剪切成像弹性成像(supersonic shear imaging),在被动跖屈(膝关节角度 0°和 90°,0°表示膝关节完全伸展,以随机顺序)期间测量肌肉和肌腱剪切弹性模量。在膝关节屈曲 90°时,确定的松弛长度的组内重复性较好(跟腱和腓肠肌内侧头的 SEM 分别为 3.3°和 2.2°),在膝关节屈曲 0°时非常好(跟腱和腓肠肌内侧头的 SEM 分别为 1.9°和 1.9°)。在 0°和 90°膝关节屈曲时,腓肠肌内侧头的松弛长度都明显低于跟腱(P<0.0001;平均差异分别为 19.4±3.8°和 25.5±7.6°)。总之,本研究表明,使用超声剪切成像可以实验确定肌腱松弛的关节角度。腓肠肌内侧头和跟腱的松弛长度发生在不同的关节角度。尽管报告这一结果对于更好地理解肌肉-肌腱相互作用至关重要,但需要进一步的实验研究来解释这一结果。

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