首页> 外文期刊>Journal of Biomechanics >OPTICAL AND MECHANICAL DETERMINATION OF POISSONS RATIO OF ADULT BOVINE HUMERAL ARTICULAR CARTILAGE
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OPTICAL AND MECHANICAL DETERMINATION OF POISSONS RATIO OF ADULT BOVINE HUMERAL ARTICULAR CARTILAGE

机译:牛肱骨人工关节软骨的松质比的光学和力学测定。

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The equilibrium stiffness of articular cartilage is controlled by flow-independent elastic properties (Young's modulus, E(s), and Poisson's ratio, upsilon(s)) of the hydrated tissue matrix. In the current study, an optical (microscopic) method has been developed for the visualization of the boundaries of cylindrical bovine humeral head articular cartilage disks (n = 9), immersed in physiological solution, and compressed in unconfined geometry. This method allowed a direct, model-independent estimation of Poisson's ratio of the tissue at equilibrium, as well as characterization of the shape changes of the sample during the nonequilibrium dynamic phase. In addition to optical analyses, the equilibrium behavior of cartilage disks in unconfined and confined ramp-stress relaxation tests provided a direct estimation of the aggregate modulus, H-a, and Young's modulus and, indirectly, Poisson's ratio for the articular cartilage. The mean value for Poisson's ratio obtained from the optical analysis was 0.185 +/- 0.065 (mean +/- S.D., n = 9). Values of elastic parameters obtained from the mechanical tests were 0.754 +/- 0.198 MPa, 0.677 +/- 0.223 MPa, and 0.174 +/- 0.106 for H-a, E(s), and upsilon(s), respectively (mean +/- S.D., n = 7). The similar upsilon(s)-values obtained with optical and mechanical techniques imply that, at equilibrium, for these two tests, the isotropic model is acceptable for mechanical analysis. However, the microscopic technique revealed that the lateral expansion, especially during the initial phase of relaxation, was inhomogeneous through the tissue depth. The superficial cartilage zone expanded less than the radial zone. The zonal differences in expansion were attributed to the known zonal differences in the fibrillar collagen architecture and proteoglycan concentration. (C) 1997 Elsevier Science Ltd. [References: 42]
机译:关节软骨的平衡刚度由水合组织基质的与流量无关的弹性特性(杨氏模量,E和泊松比,上sil)控制。在当前的研究中,已经开发出一种光学(微观)方法来可视化圆柱状肱骨头关节软骨盘(n = 9)的边界,将其浸入生理溶液中并压缩成无限制的几何形状。这种方法可以直接,独立于模型来估计平衡状态下组织的泊松比,以及表征非平衡动态阶段中样品的形状变化。除了光学分析外,在无限制和限制的斜应力松弛测试中,软骨盘的平衡行为还提供了对骨软骨的总模量,H-a和杨氏模量以及间接的泊松比的直接估计。由光学分析获得的泊松比的平均值为0.185 +/- 0.065(平均值+/- S.D.,n = 9)。从机械测试获得的弹性参数值分别为Ha,E和upsilon为0.754 +/- 0.198 MPa,0.677 +/- 0.223 MPa和0.174 +/- 0.106(平均值+/- SD,n = 7)。用光学和机械技术获得的类似upsilon值表明,在平衡时,对于这两个测试,各向同性模型对于机械分析是可接受的。然而,显微技术揭示了横向扩展,特别是在松弛的初始阶段,在整个组织深度上是不均匀的。浅表软骨区的扩张小于the骨区。扩张的区域差异归因于原纤维胶原结构和蛋白聚糖浓度的已知区域差异。 (C)1997 Elsevier Science Ltd. [参考:42]

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