Savelberg H H, Willems P J, Baan G C, Huijing P A
Department of Human Movement Sciences, Faculty of Health Science, Maastricht University, Maastricht, The Netherlands.
J Morphol. 2001 Oct;250(1):89-99. doi: 10.1002/jmor.1061.
In this study, the deformation of different fibers of the rat m. plantaris during "isometric" contractions at different muscle lengths was considered. Because the m. plantaris has an obviously inhomogeneous architecture, its fibers on the medial side of the muscle belly are judged to be shorter than those on the lateral side of it. It was expected that longitudinal deformation of different fibers would vary accordingly. A 3D video analysis of contracting muscle showed that longitudinal strain of fibers as a function of muscle length does not differ between fibers on different sides of the muscle. Apart from longitudinal shortening, the fibers were also displaced laterally during a contraction. The fibers displaced during a contraction in a direction perpendicular to their longitudinal axis. The displacement of the fibers occurred asymmetrically, resulting in a helical deformation of the whole muscle. It is concluded that the asymmetric displacement and the helical deformation must result from transversal forces between the fibers. It is hypothesized that these transversal forces cancel out differences in longitudinal strains that might exist between fibers.
在本研究中,考虑了大鼠跖肌在不同肌肉长度下进行“等长”收缩时不同纤维的变形情况。由于跖肌具有明显不均匀的结构,其肌腹内侧的纤维被判定比外侧的纤维短。预计不同纤维的纵向变形会相应地有所不同。对收缩肌肉的三维视频分析表明,纤维的纵向应变作为肌肉长度的函数,在肌肉不同侧的纤维之间并无差异。除了纵向缩短外,纤维在收缩过程中还会横向移位。纤维在收缩过程中沿垂直于其纵轴的方向移位。纤维的移位是不对称的,导致整个肌肉呈螺旋状变形。得出的结论是,不对称移位和螺旋状变形必定是由纤维之间横向力造成的。据推测,这些横向力抵消了纤维之间可能存在的纵向应变差异。