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The different contributions of cortical and trabecular bone to implant anchorage in a human vertebra

机译:皮质和小梁骨对人椎骨植入锚定的不同贡献

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The quality of the peri-implant bone and the strength of the bone-implant interface are important factors for implant anchorage. With regard to peri-implant bone, cortical and trabecular compartments both contribute to the load transfer from the implant to the surrounding bone but their relative roles have yet to be investigated in detail. However, this knowledge is crucial for the better understanding of implant failure and for the development of new implants. This is especially true for osteoporotic bone, which is characterized by a deterioration of the trabecular architecture and a thinning of the cortical shell, leading to a higher probability of implant loosening. The aim of this study was to investigate the relative biomechanical roles of cortical and trabecular bone on implant pull-out stiffness in human vertebrae. The starting point of our investigation was a micro-computed tomography scan of an adult human vertebra. The cortical shell was identified and an implant was digitally inserted into the vertebral body. Pull-out tests were simulated with micro-finite element analysis and the apparent stiffness of the system with various degrees of shell thickness and bone volume fraction was computed. Our computational models demonstrated that cortical bone, although being very thin, plays a major role in the mechanical competence of the bone-implant construct.
机译:植入物周围骨的质量和植入物与骨之间的界面强度是固定植入物的重要因素。关于植入物周围的骨,皮质和小梁腔室都对从植入物到周围骨骼的负荷转移做出了贡献,但是它们的相对作用尚待详细研究。但是,这些知识对于更好地了解种植体失败和开发新的种植体至关重要。对于骨质疏松骨尤其如此,其特征是小梁结构恶化和皮层外壳变薄,导致植入物松动的可能性更高。这项研究的目的是研究皮质和小梁骨对人椎骨植入物拉出刚度的相对生物力学作用。我们研究的起点是对成年人类椎骨进行微计算机断层扫描。确定皮层外壳并将植入物以数字方式插入椎体。通过微有限元分析对拉拔测试进行了模拟,并计算了不同程度的壳厚度和骨体积分数的系统的表观刚度。我们的计算模型表明,皮质骨尽管很薄,但在骨植入物结构的机械能力中起着重要作用。

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