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一种关于关节软骨离子诱导肿胀行为的连续介质理论及实验。

A continuum theory and an experiment for the ion-induced swelling behavior of articular cartilage.

作者信息

Myers E R, Lai W M, Mow V C

出版信息

J Biomech Eng. 1984 May;106(2):151-8. doi: 10.1115/1.3138473.

Abstract

Swelling of normal bovine articular cartilage equilibrated in NaCl solutions was dimensionally measured in thin strips of tissue. The ion-induced strains show that free swelling of articular cartilage is anisotropic and inhomogeneous. For the molar concentrations used, contraction increased linearly with concentration, defining a "coefficient of chemical contraction" (alpha c). Isometrically constrained specimens registered a rise in tensile force followed by stress relaxation. An extension of the biphasic theory incorporating this ion-induced strain is proposed. This theory can describe the equilibrium anisotropic swelling behavior of cartilage and explain the transient force history observed in the isometric experiment.

摘要

在薄组织条中对置于氯化钠溶液中达到平衡的正常牛关节软骨肿胀进行了尺寸测量。离子诱导应变表明关节软骨的自由肿胀是各向异性且不均匀的。对于所使用的摩尔浓度,收缩随浓度呈线性增加,定义了一个“化学收缩系数”(αc)。等长约束标本记录到拉伸力上升,随后是应力松弛。提出了一个包含这种离子诱导应变的双相理论扩展。该理论可以描述软骨的平衡各向异性肿胀行为,并解释等长实验中观察到的瞬态力历程。

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