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Contact models of repaired articular surfaces: influence of loading conditions and the superficial tangential zone

机译:修复关节表面的接触模型:载荷条件和表面切向区的影响

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The superficial tangential zone (STZ) plays a significant role in normal articular cartilage’s ability to support loads and retain fluids. To date, tissue engineering efforts have not replicated normal STZ function in cartilage repairs. This finite element study examined the STZ’s role in normal and repaired articular surfaces under different contact conditions. Contact area and pressure distributions were allowed to change with time, tension-compression nonlinearity modeled collagen behavior in the STZ, and nonlinear geometry was incorporated to accommodate finite deformation. Responses to loading via impermeable and permeable rigid surfaces were compared to loading via normal cartilage, a more physiologic condition, anticipating the two rigid loading surfaces would bracket that of normal. For models loaded by normal cartilage, an STZ placed over the inferior repair region reduced the short-term axial compression of the articular surface by 15%, when compared to a repair without an STZ. Covering the repair with a normal STZ shifted the flow patterns and strain levels back toward that of normal cartilage. Additionally, reductions in von Mises stress (21%) and an increase in fluid pressure (13%) occurred in repair tissue under the STZ. This continues to show that STZ properties of sufficient quality are likely critical for the survival of transplanted constructs in vivo. However, response to loading via normal cartilage did not always fall within ranges predicted by the rigid surfaces. Use of more physiologic contact models is recommended for more accurate investigations into properties critical to the success of repair tissues.
机译:切向浅表带(STZ)在正常关节软骨支撑负荷和保持体液的能力中起着重要作用。迄今为止,组织工程方面的努力还没有在软骨修复中复制正常的STZ功能。这项有限元研究检查了STZ在不同接触条件下在正常和修复的关节表面中的作用。允许接触面积和压力分布随时间变化,张力-压缩非线性模拟了STZ中的胶原行为,并加入了非线性几何形状以适应有限的变形。将通过不可渗透和可渗透的刚性表面对载荷的响应与通过正常软骨(一种更为生理的状况)进行的载荷相比较,预计这两个刚性载荷表面将与正常载荷相适应。对于正常软骨加载的模型,与没有STZ的修复相比,放置在下部修复区域上的STZ减少了关节表面的短期轴向压缩15%。用正常的STZ覆盖修复物,会使流型和应变水平朝正常软骨的方向移动。此外,STZ下修复组织中的冯米塞斯应力降低(21%),体液压力升高(13%)。这继续表明,足够质量的STZ特性可能对于体内移植物的存活至关重要。但是,通过正常软骨对负荷的反应并不总是落在刚性表面所预测的范围内。建议使用更多的生理接触模型,以更准确地研究对修复组织成功至关重要的特性。

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