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Recent Advances in Computational Mechanics of the Human Knee Joint

机译:人体膝关节计算力学的最新进展

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摘要

Computational mechanics has been advanced in every area of orthopedic biomechanics. The objective of this paper is to provide a general review of the computational models used in the analysis of the mechanical function of the knee joint in different loading and pathological conditions. Major review articles published in related areas are summarized first. The constitutive models for soft tissues of the knee are briefly discussed to facilitate understanding the joint modeling. A detailed review of the tibiofemoral joint models is presented thereafter. The geometry reconstruction procedures as well as some critical issues in finite element modeling are also discussed. Computational modeling can be a reliable and effective method for the study of mechanical behavior of the knee joint, if the model is constructed correctly. Single-phase material models have been used to predict the instantaneous load response for the healthy knees and repaired joints, such as total and partial meniscectomies, ACL and PCL reconstructions, and joint replacements. Recently, poromechanical models accounting for fluid pressurization in soft tissues have been proposed to study the viscoelastic response of the healthy and impaired knee joints. While the constitutive modeling has been considerably advanced at the tissue level, many challenges still exist in applying a good material model to three-dimensional joint simulations. A complete model validation at the joint level seems impossible presently, because only simple data can be obtained experimentally. Therefore, model validation may be concentrated on the constitutive laws using multiple mechanical tests of the tissues. Extensive model verifications at the joint level are still crucial for the accuracy of the modeling.
机译:计算力学在骨科生物力学的每个领域都得到了发展。本文的目的是对在不同负荷和病理条件下膝关节力学功能分析中使用的计算模型进行一般性综述。首先总结了在相关领域发表的主要评论文章。简要讨论了膝盖软组织的本构模型,以帮助理解关节建模。此后对胫股关节模型进行了详细回顾。还讨论了几何重建程序以及有限元建模中的一些关键问题。如果模型构造正确,则计算模型可以是研究膝关节机械行为的可靠而有效的方法。单相材料模型已用于预测健康的膝盖和修复的关节的瞬时负荷响应,例如全部和部分半月板切除,ACL和PCL重建以及关节置换。近来,已经提出了解释软组织中流体加压的多孔力学模型来研究健康和受损膝关节的粘弹性响应。尽管本构模型在组织水平上已经取得了很大的进步,但是在将良好的材料模型应用于三维关节仿真中仍然存在许多挑战。目前似乎无法在关节一级进行完整的模型验证,因为只能通过实验获得简单的数据。因此,模型验证可以集中在使用组织的多次机械测试的本构定律上。联合级别的大量模型验证对于建模的准确性仍然至关重要。

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