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测量肌腱的三维应变分布。

Measuring three-dimensional strain distribution in tendon.

机构信息

Department of Computer Science, University of Sheffield, Sheffield, UK.

出版信息

J Microsc. 2013 Mar;249(3):195-205. doi: 10.1111/jmi.12009. Epub 2013 Jan 16.

Abstract

Tendons are tough fibrous tissues that facilitate skeletal movement by transferring muscular force to bone. Studies into the effects of mechanical stress on tendons have shown that these can either accelerate healing or cause tendon injuries depending on the load applied. It is known that local strain magnitude and direction play an important role in tendon remodelling and also failure, and different techniques to study strain distribution have been proposed. Image registration and processing techniques are among the recently employed methods. In this study, a novel three-dimensional image processing technique using the Sheffield Image Registration Toolkit is introduced to study local strain and displacement distribution in tendon. The results show that the local normal strain values in the loading axis are smaller than the global applied load, and fibre sliding was detected as a dominant mechanism for transferring the applied load within tendon. However, results from different samples suggest three distinct modes of deformation during loading, as some show only parallel sliding of fibres in respect to the loading axis, whereas others are twisted or deflected in directions transverse to the loading axis. The proposed 3D image registration method is essential for analysing this out-of-plane movement, which cannot be detected using a standard 2D method.

摘要

肌腱是坚韧的纤维组织,通过将肌肉力量传递到骨骼上来促进骨骼运动。对机械应力对肌腱的影响的研究表明,这些影响可能会加速愈合,也可能导致肌腱损伤,具体取决于施加的负荷。已知局部应变大小和方向在肌腱重塑和失效中起着重要作用,并且已经提出了不同的研究应变分布的技术。图像配准和处理技术是最近采用的方法之一。在这项研究中,引入了一种使用谢菲尔德图像配准工具包的新型三维图像处理技术,以研究肌腱中的局部应变和位移分布。结果表明,在加载轴上的局部法向应变值小于全局施加的载荷,并且检测到纤维滑动是在肌腱内传递施加的载荷的主要机制。然而,来自不同样本的结果表明,在加载过程中有三种不同的变形模式,因为有些样本仅显示纤维相对于加载轴的平行滑动,而其他样本则沿垂直于加载轴的方向扭曲或偏转。所提出的 3D 图像配准方法对于分析这种面外运动是必要的,而使用标准的 2D 方法无法检测到这种运动。

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