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承受压缩载荷的软骨内软骨细胞的功能环境:一种理论与实验方法

The functional environment of chondrocytes within cartilage subjected to compressive loading: a theoretical and experimental approach.

作者信息

Wang Christopher C-B, Guo X Edward, Sun Dongning, Mow Van C, Ateshian Gerard A, Hung Clark T

机构信息

Department of Biomedical Engineering, Columbia University, New York, NY 10027, USA.

出版信息

Biorheology. 2002;39(1-2):11-25.

Abstract

A non-invasive methodology (based on video microscopy, optimized digital image correlation and thin plate spline smoothing technique) has been developed to determine the intrinsic tissue stiffness (H(a)) and the intrinsic fixed charge density (c(0)(F)) distribution for hydrated soft tissues such as articular cartilage. Using this technique, the depth-dependent inhomogeneous parameters H(a)(z) and c(0)(F)(z) were determined for young bovine cartilage and incorporated into a triphasic mixture model. This model was then used to predict the mechanical and electrochemical events (stress, strain, fluid/osmotic pressure, and electrical potentials) inside the tissue specimen under a confined compression stress relaxation test. The integration of experimental measurements with theoretical analyses can help to understand the unique material behaviors of articular cartilage. Coupled with biological assays of cell-scale biosynthesis, there is also a great potential in the future to study chondrocyte mechanotransduction in situ with a new level of specificity.

摘要

已开发出一种非侵入性方法(基于视频显微镜、优化的数字图像相关和薄板样条平滑技术)来确定诸如关节软骨等水合软组织的固有组织硬度(H(a))和固有固定电荷密度(c(0)(F))分布。使用该技术,确定了幼年牛软骨随深度变化的非均匀参数H(a)(z)和c(0)(F)(z),并将其纳入三相混合模型。然后使用该模型预测在受限压缩应力松弛试验下组织样本内部的力学和电化学事件(应力、应变、流体/渗透压和电势)。实验测量与理论分析的结合有助于理解关节软骨独特的材料行为。再结合细胞尺度生物合成的生物学测定,未来还有很大潜力以新的特异性水平原位研究软骨细胞的机械转导。

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