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Compressive and tensile properties of articular cartilage in axial loading are modulated differently by osmotic environment.

机译:渗透环境对关节软骨在轴向载荷下的压缩和拉伸特性的调节不同。

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摘要

Aims of the present study were to test the hypotheses that (1) the compressive properties of articular cartilage are affected more by changes in the medium ionic concentration than the tensile properties, (2) collagen network controls the compression-tension nonlinearity of articular cartilage, and (3) proteoglycan (PG) and collagen contents are primary determinants of the compressive and tensile properties of cartilage, respectively. These hypotheses were experimentally tested by axial compressive and tensile tests (perpendicular to the cartilage surface) of bovine articular cartilage samples immersed in 0.005 M (n=6), 0.15M (n=12) and 1.0M (n=6) saline solutions. Compressive and tensile behaviour was analyzed by a nonlinear fibril-reinforced poroelastic model. Tissue PG and collagen contents were measured using Fourier transform infrared imaging spectroscopy (FT-IRIS). The compressive modulus of cartilage varied significantly (n=6, p<0.05) as the medium concentration changed. The tensile modulus changed significantly only as the medium concentration was reduced from 0.15 to 0.005 M (n=6, p<0.05). The fibril-reinforced poroelastic model with stiff, nonlinear collagen fibrils predicted the experimentally measured compression-tension nonlinearity of cartilage. Tissue PG and collagen contents accounted for the compressive and tensile properties of cartilage.
机译:本研究的目的是检验以下假设:(1)中等离子浓度的变化对关节软骨的压缩特性的影响大于对拉伸特性的影响;(2)胶原网络控制关节软骨的压缩-拉伸非线性, (3)蛋白聚糖(PG)和胶原蛋白含量分别是决定软骨压缩和拉伸特性的主要因素。这些假设通过浸泡在0.005 M(n = 6),0.15M(n = 12)和1.0M(n = 6)盐溶液中的牛关节软骨样品的轴向压缩和拉伸测试(垂直于软骨表面)进行了实验测试。通过非线性原纤维增强的多孔弹性模型分析了压缩和拉伸行为。使用傅立叶变换红外成像光谱仪(FT-IRIS)测量组织PG和胶原蛋白含量。软骨的压缩模量随培养基浓度的变化而显着变化(n = 6,p <0.05)。拉伸模量仅在介质浓度从0.15降低至0.005 M时才发生显着变化(n = 6,p <0.05)。具有刚性,非线性胶原原纤维的原纤维增强的多孔弹性模型预测了实验测量的软骨的压缩张力非线性。组织中的PG和胶原蛋白含量占软骨的压缩和拉伸特性。

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