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预测非骨水泥型骨科植入物长期力学稳定性的数值模型。

Numerical model to predict the long-term mechanical stability of cementless orthopaedic implants.

作者信息

Viceconti M, Ricci S, Pancanti A, Cappello A

机构信息

Laboratorio di Tecnologia Medica, Istituti Ortopedici Rizzoli, Bologna, Italy.

出版信息

Med Biol Eng Comput. 2004 Nov;42(6):747-53. doi: 10.1007/BF02345207.

Abstract

The objective of this research was to develop a purely biomechanical model, intended to predict the long-term secondary stability of the implant starting from the biomechanical stability immediately after the operation. A continuous rule-based adaptation scheme was formulated as a dynamic system, and the work verified if such a model produced unique and clinically meaningful solutions. It also investigated whether this continuous model provided results comparable with those of a simpler, discrete-states model used in a previous study. The proposed model showed stable convergence behaviour with all investigated initial conditions, with oscillatory behaviour limited to the first steps of the simulation. The results obtained with the wide range of initial conditions support the hypothesis of the existence and uniqueness of the solution for all initial conditions. The differences between the continuous model and the simpler and more efficient finite-states model were found to be extremely modest (less than 4% over the predicted bonded area). Because of these minimal differences, the use of the much faster finite-states model is recommended to investigate asymptotic conditions, and the continuous model described should be used to investigate the evolution over time of the adaptive process.

摘要

本研究的目的是开发一个纯生物力学模型,旨在从手术后即刻的生物力学稳定性出发,预测植入物的长期继发稳定性。制定了一种基于规则的连续自适应方案作为动态系统,并验证了该模型是否能产生独特且具有临床意义的解决方案。研究还探讨了这个连续模型所提供的结果是否与先前研究中使用的更简单的离散状态模型的结果相当。所提出的模型在所有研究的初始条件下均表现出稳定的收敛行为,振荡行为仅限于模拟的最初几步。在广泛的初始条件下获得的结果支持了所有初始条件下解的存在性和唯一性的假设。发现连续模型与更简单且更高效的有限状态模型之间的差异极小(在预测的结合面积上小于4%)。由于这些差异极小,建议使用速度快得多的有限状态模型来研究渐近条件,而应使用所描述的连续模型来研究自适应过程随时间的演变。

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