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FINITE ELEMENT MODELING OF REPAIR CARTILAGE BENEATH A PROTECTIVE LAYER

机译:保护层下修复软骨的有限元建模

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摘要

Significant efforts are being devoted to the creation of replacement tissue for repair of defects in articular surfaces. Some success has been realized; yet, the normal zonal characteristics of articular cartilage throughout its thickness and normal material properties have not been reproduced in vitro in scaffolds nor in vivo in repairing defects. The fate of such transplanted scaffolds in vivo may be doomed mechanically from the outset if material properties of sufficient quality are not developed. The superficial tangential zone (STZ) has been shown to play a critical role in supporting axial loads and retaining fluids (Glazer and Putz, 2002, Torzilli, et al, 1983, Torzilli, 1993). Previous models have demonstrated excessive axial deformation of repair cartilage without the STZ (Smith, et al 2001, Wayne, et al, 1991). Additionally, modeling the STZ of normal cartilage as transversely isotropic has yielded better agreement with indentation experimental results than isotropic models (Korhonen, et al, 2002, Mow, et al, 2000, Cohen, et al, 1993). This study uses finite element analysis to model the STZ with a preferred direction parallel to the articulating surface, thereby simulating a "split-line" direction. The in-plane directions are modeled normal to the "split-line" direction and the articulating surface. Normal and repairing defects are modeled with the importance of the STZ emphasized.
机译:人们致力于创建用于修复关节表面缺陷的替代组织。已经取得了一些成功;然而,尚未在体外在支架中或在体内修复缺损中再现关节软骨在其整个厚度上的正常带状特征和正常材料特性。如果没有开发出足够质量的材料特性,这种移植的支架在体内的命运可能会从一开始就被机械地注定。研究表明,表面切向区(STZ)在支撑轴向载荷和保持流体方面起着关键作用(Glazer和Putz,2002; Torzilli等,1983; Torzilli,1993)。以前的模型已经证明,没有STZ的情况下,修复软骨的轴向变形过大(Smith等,2001; Wayne等,1991)。另外,与各向同性模型相比,将正常软骨的STZ建模为横向各向同性与压痕实验结果具有更好的一致性(Korhonen等,2002; Mow等,2000; Cohen等,1993)。这项研究使用有限元分析对STZ建模,其首选方向平行于关节表面,从而模拟了“分割线”方向。垂直于“分割线”方向和关节表面对平面内方向建模。对正常缺陷和修复缺陷的建模都强调了STZ的重要性。

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