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Implant size and mechanical properties influence the failure of the adhesive bond between cartilage implants and native tissue in a finite element analysis

机译:在有限元分析中,植入物的大小和机械性能会影响软骨植入物与天然组织之间的粘合失败

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摘要

Implanted cartilage replacements (ICRs) are a promising approach to restore the functionality of joints with partial- and full-thickness articular cartilage lesions. Two major hurdles hindering successful repair of cartilage injuries with ICRs are their inadequate mechanical properties and fixation into the defect area. While the ICR geometry and mechanical properties are expected to affect the loads and deformations at the adhesive interface between the implant and native cartilage, little is known about the relationship between these implant characteristics and the quality of the fixation. The objective of this study was to evaluate the effect of implant size, thickness, modulus, surface coefficient of friction and Poisson's ratio on the failure of a fibrin adhesive interface. These factors were evaluated in an idealized finite element model of the medial compartment of the human knee with the damage and failure of fibrin at the implant/cartilage interface represented by a cohesive zone model. Both axial compression and sliding were included in the loading conditions. The results demonstrated that ICR size and material properties have a significant effect on the failure of the fibrin that adheres the implant to the native tissue. Lack of anchorage to underlying bone, larger implant sizes, higher surface coefficient of friction and higher compliance of the implant can increase the chance of implant loosening and delamination. In the future, these results may guide implant design and cartilage repair techniques.
机译:植入式软骨置换术(ICR)是一种有希望的方法,可恢复具有部分和全层关节软骨损伤的关节的功能。阻碍ICR成功修复软骨损伤的两个主要障碍是其机械性能不足以及无法固定到缺损区域。虽然预期ICR的几何形状和机械性能会影响植入物与天然软骨之间的粘合剂界面处的载荷和变形,但对于这些植入物特性与固定质量之间的关系知之甚少。这项研究的目的是评估植入物尺寸,厚度,模量,表面摩擦系数和泊松比对血纤蛋白粘合剂界面破坏的影响。这些因素在人膝内侧隔间的理想化有限元模型中进行了评估,并以内聚区模型代表了植入物/软骨界面处纤维蛋白的损坏和破坏。轴向压缩和滑动都包括在加载条件中。结果表明,ICR的大小和材料性质对将植入物粘附至天然组织的血纤蛋白的破坏具有重大影响。缺乏对下方骨骼的锚固,较大的植入物尺寸,较高的表面摩擦系数和较高的植入物顺应性会增加植入物松动和分层的机会。将来,这些结果可能会指导植入物设计和软骨修复技术。

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