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首页> 外文期刊>Osteoarthritis and cartilage >Functional anatomy of articular cartilage under compressive loading Quantitative aspects of global, local and zonal reactions of the collagenous network with respect to the surface integrity.
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Functional anatomy of articular cartilage under compressive loading Quantitative aspects of global, local and zonal reactions of the collagenous network with respect to the surface integrity.

机译:压缩载荷下关节软骨的功能解剖胶原网络相对于表面完整性的整体,局部和区域反应的定量方面。

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OBJECTIVE: To assess the influence of local compressive loading on the arrangement of the collagenous fibers in intact articular cartilage. To quantitate the zonal deformation of intact cartilage under load. To analyse the influence of removal of the tangential zone on the load-induced changes. MATERIALS AND METHODS: 380 cylinder shaped cartilage-on-bone samples (d=7 mm) were harvested from 20 bovine femoral heads. In 120 of them the tangential zone was removed. All samples were loaded for 20 min by 0.42 MPa or 0.98 MPa. After proteoglycan extraction, fixation in 4% formalin, dehydration by increasing concentrations of acetone, critical point drying, freeze-fracturing and gold-coating the samples were analysed by scanning-electron-microscopy. RESULTS: Fiber bulging away from the center of load occurred in an area larger than the directly loaded one and its extent increased parallel to loading (P< 0.01). Crimp was seen only under the indenter and spread with increasing load from the intermediate zone into the tangential zone and radial zone. The absolute height of tangential zone and intermediate zone together remained constant under all loading situations at the costs of the radial zone. All changes due to loading were fully reversible. Removal of the tangential zone reduced the area of bulging (P< 0.01) but markedly increased the amount of crimp. Overall radial strain was not altered, but overall superficial tangential strain was increased by up to 20% (P< 0.01) and high peaks in the local distribution of superficial tensile strain developed. CONCLUSIONS: The collagenous architecture is a dynamic property of the articular cartilage adapting to its respective loading situation. Crimp reflects local compressive strain. Under compressive loading larger portions of cartilage than the directly loaded areas are functionally included in the process of load transmission. During this process the tangential zone and the intermediate zone form a common functional unit providing a high degree of fiber cross-linkage as a possible mechanism to increase zonal compressive stiffness. Removal of the tangential zone seems to impair distribution of a locally applied compressive load sideways and leads to a reduced cartilage volume included in the process of load transmission. An intact tangential zone contributes to prevent peaks of surface tensile strain. Copyright 2002 OsteoArthritis Research Society International.
机译:目的:评估局部压缩负荷对完整关节软骨中胶原纤维排列的影响。为了定量在载荷下完整软骨的区域变形。分析去除切向区域对载荷引起的变化的影响。材料与方法:从20个牛股骨头中收集了380个圆柱状骨软骨样品(d = 7 mm)。在其中的120个切线区域已被删除。所有样品均以0.42 MPa或0.98 MPa加载20分钟。蛋白聚糖提取后,固定在4%福尔马林中,通过增加丙酮的浓度进行脱水,临界点干燥,冷冻压裂和金包被,通过扫描电子显微镜进行分析。结果:光纤从负载中心鼓起,出现在比直接负载更大的区域,并且其范围平行于负载而增加(P <0.01)。压接仅在压头下方可见,并且随着载荷的增加而从中间区域扩散到切向区域和径向区域。在所有载荷情况下,切向区和中间区的绝对高度共同保持恒定,但以径向区为代价。加载引起的所有变化都是完全可逆的。切线区的去除减少了凸出的面积(P <0.01),但显着增加了压接量。总体径向应变没有改变,但总体表面切向应变增加了高达20%(P <0.01),并且在表面拉伸应变的局部分布中出现了一个高峰。结论:胶原结构是关节软骨的动态特性,可适应其各自的负荷情况。压接反映了局部压缩应变。在压缩载荷下,在功能上包括比直接载荷区域更大的软骨部分。在此过程中,切向区和中间区形成一个公共的功能单元,该单元可提供高度的纤维交联,这是增加区域压缩刚度的一种可能的机制。切线区域的去除似乎会削弱侧向施加的压缩载荷的分布,并导致载荷传递过程中软骨体积的减少。完整的切线区域有助于防止表面拉伸应变达到峰值。版权所有2002 OsteoArthritis Research Society International。

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