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CARTILAGE INTERSTITIAL FLUID LOAD SUPPORT IN UNCONFINED COMPRESSION

机译:无限制压缩中的软骨间质流体载荷支持

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摘要

Under physiological conditions of loading, articular cartilage is subjected to both compressive strains, normal to the articular surface, and tensile strains, tangential to the articular surface. Previous studies have shown that articular cartilage exhibits a much higher modulus in tension than compression. Theoretical analyses have suggested that this tension-compression nonlinearity enhances the magnitude of interstitial fluid pressurization during loading in unconfined compression, above a theoretical threshold of 33% of the average applied stress. The first hypothesis of this experimental study is that the peak fluid load support in unconfined compression is significantly greater than the 33% theoretical limit predicted for porous permeable tissues modeled with equal moduli in tension and compression. The second hypothesis is that the peak fluid load support is higher at the articular surface side of the tissue samples than near the deep zone, because the disparity between the tensile and compressive moduli is greater at the surface zone.
机译:在负荷的生理条件下,关节软骨既承受垂直于关节表面的压缩应变,又承受切向于关节表面的拉伸应变。先前的研究表明,关节软骨的拉伸模量远高于压缩。理论分析表明,这种拉伸-压缩非线性会在无侧限压缩过程中增加间质流体增压的幅度,高于平均施加应力的33%的理论阈值。该实验研究的第一个假设是,无限制压缩中的峰值流体负荷支持显着大于以相同的拉伸和压缩模量建模的多孔可渗透组织的33%理论极限。第二个假设是,在组织样本的关节表面侧的峰值流体负荷支持要比在深部区域附近的峰值更高,这是因为在表面区域拉伸模量和压缩模量之间的差异更大。

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