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跖肌的新型微观结构发现及其在宏观层面主动和被动加载过程中的影响。

Novel microstructural findings in M. plantaris and their impact during active and passive loading at the macro level.

作者信息

Böl Markus, Leichsenring Kay, Ernst Michael, Wick Carolin, Blickhan Reinhard, Siebert Tobias

机构信息

Institute of Solid Mechanics, Technische Universität Braunschweig, 38106 Braunschweig, Germany.

Institute of Solid Mechanics, Technische Universität Braunschweig, 38106 Braunschweig, Germany; Department of Sport and Motion Science, University of Stuttgart, 70569 Stuttgart, Germany.

出版信息

J Mech Behav Biomed Mater. 2015 Nov;51:25-39. doi: 10.1016/j.jmbbm.2015.06.026. Epub 2015 Jul 9.

Abstract

There are several studies dealing with experimental and structural analyses of skeletal muscles that are aimed at gaining a better understanding of three-dimensional muscle deformation and force generation. A variety of these contributions have performed structural or mechanical analyses, but very few have combined these approaches at different levels. To fill this gap, the present study aims to bring together three-dimensional micro-structural and mechanical findings in rabbit M. plantaris to study load transfer mechanisms inside the muscle during passive loading and active muscle contraction. During these two deformation states, the three-dimensional surface of the aponeurosis-tendon complex was recorded using optical measurement systems. In this way, the strain distribution on the muscle can be calculated to interpret the load transfer mechanisms inside the muscle. The results show that the three-dimensional strain distribution during muscle activation is completely different from the distribution during passive loading. Under both loading conditions, the strain distribution is irregular. To interpret these findings, the gross try and the fascicle architecture of the M. plantaris were determined. In doing so, a highly complex microstructure featuring tube- and sail-like structure was identified. Moreover, a compartmentalisation of the muscle into two compartments was detected. The smaller, bipennated muscle compartment was embedded into the larger, unipennated compartment. To the authors' knowledge, this type of inner structure has never been previously documented in single-headed muscles.

摘要

有几项研究涉及骨骼肌的实验和结构分析,旨在更好地理解肌肉的三维变形和力的产生。这些研究中有许多进行了结构或力学分析,但很少有研究在不同层面将这些方法结合起来。为了填补这一空白,本研究旨在整合兔跖肌的三维微观结构和力学研究结果,以研究被动加载和肌肉主动收缩过程中肌肉内部的载荷传递机制。在这两种变形状态下,使用光学测量系统记录腱膜 - 肌腱复合体的三维表面。通过这种方式,可以计算出肌肉上的应变分布,以解释肌肉内部的载荷传递机制。结果表明,肌肉激活期间的三维应变分布与被动加载期间的分布完全不同。在两种加载条件下,应变分布都是不规则的。为了解释这些发现,确定了跖肌的大体形态和肌束结构。在此过程中,识别出了一种具有管状和帆状结构的高度复杂的微观结构。此外,检测到肌肉被分为两个隔室。较小的羽状肌隔室嵌入到较大的单羽状隔室中。据作者所知,这种内部结构以前从未在单头肌中被记录过。

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