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牛椎间组织中流速电势与压缩应力的关系。

Relationship between streaming potential and compressive stress in bovine intervertebral tissue.

机构信息

Division of Human Mechanical Systems and Design, Faculty of Engineering, Hokkaido University, Kita-13, Nishi-8, Kita-ku, Sapporo 060-8628, Japan.

出版信息

J Biomech. 2011 Sep 2;44(13):2477-81. doi: 10.1016/j.jbiomech.2011.06.018. Epub 2011 Jul 18.

Abstract

The intervertebral disc is formed by the nucleus pulposus (NP) and annulus fibrosus (AF), and intervertebral tissue contains a large amount of negatively charged proteoglycan. When this tissue becomes deformed, a streaming potential is induced by liquid flow with positive ions. The anisotropic property of the AF tissue is caused by the structural anisotropy of the solid phase and the liquid phase flowing into the tissue with the streaming potential. This study investigated the relationship between the streaming potential and applied stress in bovine intervertebral tissue while focusing on the anisotropy and loading location. Column-shaped specimens, 5.5 mm in diameter and 3 mm thick, were prepared from the tissue of the AF, NP and the annulus-nucleus transition region (AN). The loading direction of each specimen was oriented in the spinal axial direction, as well as in the circumferential and radial directions of the spine considering the anisotropic properties of the AF tissue. The streaming potential changed linearly with stress in all specimens. The linear coefficients k(e) of the relationship between stress and streaming potential depended on the extracted positions. These coefficients were not affected by the anisotropy of the AF tissue. In addition, these coefficients were lower in AF than in NP specimens. Except in the NP specimen, the k(e) values were higher under faster compression rate conditions. In cyclic compression loading the streaming potential changed linearly with compressive stress, regardless of differences in the tissue and load frequency.

摘要

椎间盘由髓核(NP)和纤维环(AF)组成,椎间组织含有大量带负电荷的蛋白聚糖。当组织变形时,液体流动会产生带正电荷的流动电势。AF 组织的各向异性特性是由固相和随流动电势流入组织的液相的结构各向异性引起的。本研究在关注各向异性和加载位置的同时,研究了牛椎间组织的流动电势与施加应力之间的关系。从 AF、NP 和环核过渡区(AN)的组织中制备出直径为 5.5mm、厚 3mm 的柱状标本。每个标本的加载方向均沿脊柱轴向以及考虑到 AF 组织各向异性的脊柱的周向和径向方向。在所有标本中,流动电势随应力呈线性变化。应力与流动电势之间关系的线性系数 k(e)取决于提取的位置。这些系数不受 AF 组织各向异性的影响。此外,AF 标本中的这些系数低于 NP 标本。除 NP 标本外,在较快的压缩速率条件下,k(e)值较高。在循环压缩载荷下,流动电势随压缩应力呈线性变化,与组织和载荷频率的差异无关。

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