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在分离的牛纤维环组织样本中测量的 3D 非仿射有限应变。

3D non-affine finite strains measured in isolated bovine annulus fibrosus tissue samples.

机构信息

Department of Biomedical Engineering, Eindhoven University of Technology, P.O. Box 513, 5600 MB, Eindhoven, The Netherlands.

出版信息

Biomech Model Mechanobiol. 2012 Jan;11(1-2):161-70. doi: 10.1007/s10237-011-0300-8. Epub 2011 Mar 31.

Abstract

Understanding of the mechanics of disc tissue calls for measurement of strains in physiological conditions. Because the intervertebral disc is gripped between two vertebrae, the swelling is constrained in vivo, resulting in a intradiscal pressure of 0.1-0.2 MPa in supine position. The excision of isolated disc tissue samples results often in non-physiological swelling. The purpose of the present study is to measure 3D finite strains in isolated bovine disc tissue specimens under physiological osmolarity and pressure, particularly around discontinuities of the collagen network. The collagen is stained by means of CNA35 probe, and the (dead) cells are stained by means of propidium iodide. The tissue is observed under confocal microscopy, under an externally applied pressure generated by a PEG solution. The 3D finite strains are obtained through correlation of the texture of the 3D images. The correlation technique yields principal strains in all areas except within collagen-free areas. The deformation is strongly non-affine. Especially around discontinuities, the strain field is non-homogeneous. Macroscopic strains as computed from finite element analysis of whole discs are insufficient to predict microstrains around clefts or cells. Because of the small number of specimens, the present results should be considered preliminary.

摘要

理解椎间盘组织的力学特性需要在生理条件下测量应变。由于椎间盘夹在两个椎体之间,在体内会受到限制,因此在仰卧位时椎间盘内的压力为 0.1-0.2 MPa。从分离的椎间盘组织样本中切除通常会导致非生理肿胀。本研究的目的是在生理渗透压和压力下测量分离的牛椎间盘组织样本中的 3D 有限应变,特别是在胶原网络的不连续处。胶原通过 CNA35 探针染色,而(死)细胞通过碘化丙啶染色。在外部施加的 PEG 溶液压力下,通过共聚焦显微镜观察组织。通过对 3D 图像纹理的相关性来获得 3D 有限应变。相关技术可在除无胶原区域之外的所有区域中获得主应变。变形强烈非仿射。特别是在不连续处,应变场不均匀。从整个椎间盘的有限元分析计算得到的宏观应变不足以预测裂隙或细胞周围的微应变。由于标本数量较少,目前的结果应被视为初步结果。

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