Effects of altered contractile environment on muscle shape change in the triceps surae.

IF 2.8 2区 生物学 Q2 BIOLOGY Journal of Experimental Biology Pub Date : 2024-10-18 DOI:10.1242/jeb.248118
Nicole Y Kelp, Kylie Tucker, François Hug, Taylor J M Dick
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Abstract

Skeletal muscles change shape when they contract. Current insights into the effects of shape change on muscle function have primarily come from experiments on isolated muscles operating at maximal activation levels. However, when muscles contract and change shape, the forces they apply onto surrounding muscles will also change. The impact of an altered contractile environment (i.e., mechanical behaviour of surrounding muscle) on muscle shape change, remains unknown. To address this, we altered the mechanical contributions of the gastrocnemii during isometric plantarflexion contractions [via changing knee angle] and determined if there were associated changes in how the muscles of the triceps surae bulged in thickness during a ramped contraction. We combined B-mode ultrasound imaging with surface electromyography to quantify the neuromechanical contributions of the medial (MG) and lateral gastrocnemius (MG) and soleus (SOL) muscles during isometric plantarflexion contractions. Our results demonstrated that at the same SOL activity levels, altering knee angle had no influence on the magnitude of muscle shape change (thickness) in the triceps surae muscles. We observed high levels of inter-individual variability in muscle bulging patterns, particularly in the knee flexed position, suggesting a complex relationship between muscle bulging and activation strategies in the triceps surae, which may be related to differences in muscle mechanical properties between participants or across muscles. Our findings highlight the dynamics of in vivo bulging interactions among muscles within the triceps surae and provide insights for future investigations into the impact of altered contractile environments on three-dimensional muscle deformations and force production.

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改变收缩环境对肱三头肌肌肉形状变化的影响
骨骼肌在收缩时会改变形状。目前,有关形状变化对肌肉功能影响的研究主要来自以最大激活水平运行的孤立肌肉为对象的实验。然而,当肌肉收缩并改变形状时,它们施加到周围肌肉上的力也会发生变化。改变收缩环境(即周围肌肉的机械行为)对肌肉形状变化的影响仍然未知。为了解决这个问题,我们[通过改变膝关节角度]改变了等长跖屈收缩时胃网膜的机械贡献,并确定了在斜坡收缩过程中,肱三头肌的厚度隆起是否会发生相关变化。我们将 B 型超声波成像与表面肌电图相结合,量化了腓肠肌内侧(MG)、外侧(MG)和比目鱼肌(SOL)在等长跖屈收缩时的神经机械贡献。我们的结果表明,在相同的比目鱼肌活动水平下,改变膝关节角度不会影响肱三头肌肌肉形状变化(厚度)的幅度。我们观察到肌肉隆起模式的个体间差异很大,尤其是在屈膝位置,这表明肱三头肌的肌肉隆起和激活策略之间存在复杂的关系,这可能与参与者之间或不同肌肉之间的肌肉机械特性差异有关。我们的研究结果突显了肱三头肌内肌肉之间在体内隆起相互作用的动态变化,并为今后研究改变收缩环境对三维肌肉变形和力量产生的影响提供了启示。
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来源期刊
CiteScore
5.50
自引率
10.70%
发文量
494
审稿时长
1 months
期刊介绍: Journal of Experimental Biology is the leading primary research journal in comparative physiology and publishes papers on the form and function of living organisms at all levels of biological organisation, from the molecular and subcellular to the integrated whole animal.
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