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Changes in the length and three-dimensional orientation of muscle fascicles and aponeuroses with passive length changes in human gastrocnemius muscles

机译:腓肠肌的被动长度变化引起的肌束和腱膜的长度和三维取向的变化

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摘要

The mechanisms by which skeletal muscles lengthen and shorten are potentially complex. When the relaxed human gastrocnemius muscle is at its shortest in vivo lengths it falls slack (i.e. it does not exert any passive tension). It has been hypothesised that when the muscle is passively lengthened, slack is progressively taken up, first in some muscle fascicles then in others. Two-dimensional imaging methods suggest that, once the slack is taken up, changes in muscle length are mediated primarily by changes in the lengths of the tendinous components of the muscle. The aims of this study were to test the hypothesis that there is progressive engagement of relaxed muscle fascicles, and to quantify changes in the length and three-dimensional orientation of muscle fascicles and tendinous structures during passive changes in muscle length. Ultrasound imaging was used to determine the location, in an ultrasound image plane, of the proximal and distal ends of muscle fascicles at 14 sites in the human gastrocnemius muscle as the ankle was rotated passively through its full range. A three-dimensional motion analysis system recorded the location and orientation of the ultrasound image plane and the leg. These data were used to generate dynamic three-dimensional reconstructions of the architecture of the muscle fascicles and aponeuroses. There was considerable variability in the measured muscle lengths at which the slack was taken up in individual muscle fascicles. However, that variability was not much greater than the error associated with the measurement procedure. An analysis of these data which took into account the possible correlations between errors showed that, contrary to our earlier hypothesis, muscle fascicles are not progressively engaged during passive lengthening of the human gastrocnemius. Instead, the slack is taken up nearly simultaneously in all muscle fascicles. Once the muscle is lengthened sufficiently to take up the slack, about half of the subsequent increase in muscle length is due to elongation of the tendinous structures and half is due to elongation of muscle fascicles, at least over the range of muscle–tendon lengths that was investigated (up to ∼60 or 70% of the range of in vivo lengths). Changes in the alignment of muscle fascicles and flattening of aponeuroses contribute little to the total change in muscle length.
机译:骨骼肌延长和缩短的机制可能很复杂。当松弛的人腓肠肌的体内长度最短时,它会松弛(即,它不会施加任何被动张力)。假设当肌肉被动伸长时,松弛首先是在某些肌肉束中然后在其他肌肉束中逐渐被吸收。二维成像方法表明,一旦松弛被吸收,则肌肉长度的变化主要是由肌肉中肌腱成分长度的变化介导的。这项研究的目的是检验松弛的肌肉束逐渐参与的假说,并量化在肌肉长度的被动变化过程中,肌肉束和肌腱结构的长度和三维取向的变化。当踝关节被动旋转整个范围时,使用超声成像来确定人腓肠肌14个部位的肌肉束近端和远端在超声图像平面中的位置。一个三维运动分析系统记录了超声图像平面和腿的位置和方向。这些数据被用来生成肌肉束和腱膜结构的动态三维重建。各个肌肉束吸收松弛的测量肌肉长度存在很大差异。但是,该可变性并不比与测量过程相关的误差大很多。对这些数据的分析考虑了误差之间的可能相关性,结果表明,与我们先前的假设相反,在人类腓肠肌的被动延长过程中,肌肉束未逐渐参与。相反,松弛几乎同时吸收在所有肌肉束中。一旦肌肉充分伸长以吸收松弛,则随后肌肉长度增加的一半左右是由于肌腱结构的伸长,而另一半则是由于肌肉束的伸长,至少在整个肌腱长度范围内进行了调查(最多约60%或70%的体内长度)。肌肉束排列的改变和腱膜的变平对肌肉长度的总改变几乎没有影响。

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