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Combined computational study of mechanical behaviour and drug delivery from a porous, hydroxyapatite-based bone graft

机译:多孔羟基磷灰石基骨移植物的力学行为和药物输送的联合计算研究

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摘要

This paper presents a numerical model of a porous, hydroxyapatite-based bone graft also suitable as a drug delivery device. The graft was positioned in different sites and with different porosities inside a human femur model. The structural analyses were carried out to verify the graft mechanical strength, using the Tsai-Wu criterion, and the maximum porosity at which static failure does not occur. A local stress shielding risk was also calculated as the ratio between the bone stress in the intact condition and the stress after implantation of the graft. Drug release kinetics was calculated by means of the finite element method. High porosity grafts were found to fail in all implantation sites. Lower porosity grafts showed to have adequate strength if implanted in some positions, while provided insufficient resistance for other implantation sites. Drug release kinetics was found to be strongly dependent both on the porosity of the graft and the bone density near the bone-graft interface.
机译:本文提出了一种多孔的羟基磷灰石基骨移植物的数值模型,该模型也适合用作药物输送装置。移植物被放置在人类股骨模型内的不同位置并具有不同的孔隙率。使用Tsai-Wu准则进行结构分析,以验证移植物的机械强度,以及不会发生静态破坏的最大孔隙率。还计算了局部应力屏蔽风险,即完整状态下的骨应力与移植物植入后的应力之比。药物释放动力学是通过有限元方法计算的。发现高孔隙率的移植物在所有植入部位均失败。如果在某些位置植入较低孔隙度的移植物,则显示出足够的强度,而对其他植入位置的抵抗力不足。发现药物释放动力学强烈依赖于移植物的孔隙率和移植物界面附近的骨密度。

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