首页> 外文期刊>JSME International Journal. Series C, Mechanical Systems, Machine Elements and Manufacturing >Protective Mechanism of Articular Cartilage to Severe Loading : Roles of Lubricants, Cartilage Surface Layer, Extracellular Matrix and Chondrocyte
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Protective Mechanism of Articular Cartilage to Severe Loading : Roles of Lubricants, Cartilage Surface Layer, Extracellular Matrix and Chondrocyte

机译:关节软骨对重负荷的保护机制:润滑剂,软骨表面层,细胞外基质和软骨细胞的作用

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摘要

The natural synovial joints have excellent tribological performance known as very low friction and very low wear for various daily activities in human life. These functions are likely to be supported by the adaptive multimode lubrication mechanism, in which the various lubrication modes such as elastohydrodynamic lubrication, weeping, boundary and gel film lubrication appear to operate to protect articular cartilage, depending on the severity of the rubbing conditions. In this paper, various protective roles of synovial fluid, cartilage surface layer, extracellular matrix and chondrocyte to severe loading are described. In the first part, the protective mechanism by adsorbed films and underlying gel films was described on the basis of the frictional behaviors of articular cartilage against articular cartilage or glass. It was discussed that the replenishment of gel film removed during severe rubbing is likely to be controlled by supply of proteoglycan from the extracellular matrix, where the chondrocyte plays the main role in the metabolism. In the second part, the time-dependent local deformation of biphasic articular cartilage under constant total compressive strain condition was evaluated in the finite element analyses. The importance of clarification of actual stress-strain in chondrocyte was indicated in relation to the tribological property of articular cartilage.
机译:天然滑膜关节具有出色的摩擦学性能,在人类的各种日常活动中均具有极低的摩擦力和极低的磨损。自适应多模式润滑机制可能支持这些功能,其中根据摩擦条件的严重程度,各种润滑模式(如弹性流体动力润滑,渗液润滑,边界润滑和凝胶膜润滑)似乎可以保护关节软骨。本文描述了滑液,软骨表面层,细胞外基质和软骨细胞对严重负荷的各种保护作用。在第一部分中,根据关节软骨对关节软骨或玻璃的摩擦行为,描述了吸附膜和下面的凝胶膜的保护机制。讨论了在剧烈摩擦期间去除的凝胶膜的补充很可能由来自细胞外基质的蛋白聚糖控制,其中软骨细胞在新陈代谢中起主要作用。在第二部分中,通过有限元分析评估了在恒定总压缩应变条件下双相关节软骨随时间的局部变形。指出了软骨细胞中实际应力应变的澄清与关节软骨的摩擦学特性有关的重要性。

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