Institute of Sport Science, Friedrich-Schiller-University Jena, Jena, Germany.
Institute of Solid Mechanics, Technical University Braunschweig, Braunschweig, Germany.
J Mech Behav Biomed Mater. 2018 Jul;83:20-27. doi: 10.1016/j.jmbbm.2018.04.006. Epub 2018 Apr 7.
Isolated and packed muscles (e.g. in the calf) exhibit different three-dimensional muscle shapes. In packed muscles, cross-sections are more angular compared to the more elliptical ones in isolated muscles. As far as we know, it has not been examined yet, whether the shape of the muscle in its packed condition influences its internal arrangement of muscle fascicles and accordingly the contraction behavior in comparison to the isolated condition. To evaluate the impact of muscle packing, we examined the three-dimensional muscle architecture of isolated and packed rabbit M. soleus for different ankle angles (65°, 75°, 85°, 90°, and 95°) using manual digitization (MicroScribe MLX). In general, significantly increased values of pennation angle and fascicle curvature were found in packed compared to isolated M. soleus (except for fascicle curvature at 90° ankle angle). On average, fascicle length of isolated muscles exceeded fascicle lengths of packed muscles by 2.6%. Reduction of pennation angle in the packed condition had only marginal influence on force generation (about 1% of maximum isometric force) in longitudinal direction (along the line of action) although an increase of transversal force component (perpendicular to the line of action) of about 26% is expected. Results of this study provide initial evidence that muscle packing limits maximum muscle performance observed in isolated M. soleus. Besides an enhanced understanding of the impact of muscle packing on architectural parameters, the outcomes of this study are essential for realistic three-dimensional muscle modeling and model validation.
孤立和包裹的肌肉(例如小腿)表现出不同的三维肌肉形状。在包裹的肌肉中,与孤立肌肉的更椭圆形相比,横截面更具角度。据我们所知,尚未检查肌肉在包裹状态下的形状是否会影响其内部肌束的排列,并相应地影响与孤立状态相比的收缩行为。为了评估肌肉包裹的影响,我们使用手动数字化(MicroScribe MLX)检查了不同踝关节角度(65°、75°、85°、90°和 95°)下孤立和包裹的兔比目鱼肌的三维肌肉结构。一般来说,与孤立的比目鱼肌相比,包裹的比目鱼肌的肌束角度和肌束曲率明显增加(90°踝关节角度除外)。平均而言,孤立肌肉的肌束长度比包裹肌肉的肌束长度长 2.6%。尽管预计会增加约 26%的横向力分量(垂直于作用力线),但包裹状态下的肌束角度减小对纵向(沿作用力线)的力生成的影响仅略有影响(约为最大等长力的 1%)。这项研究的结果提供了初步证据,表明肌肉包裹限制了在孤立的比目鱼肌中观察到的最大肌肉性能。除了增强对肌肉包裹对结构参数的影响的理解外,这项研究的结果对于现实的三维肌肉建模和模型验证至关重要。