Weiss Jeffrey A, Gardiner John C, Ellis Benjamin J, Lujan Trevor J, Phatak Nikhil S
Department of Bioengineering, University of Utah, 50 South Central Campus Drive, Room 2480, Salt Lake City, UT 84112, USA.
Med Eng Phys. 2005 Dec;27(10):845-61. doi: 10.1016/j.medengphy.2005.05.006. Epub 2005 Aug 8.
The objective of this paper is to describe strategies for addressing technical aspects of the computational modeling of ligaments with the finite element (FE) method. Strategies for FE modeling of ligament mechanics are described, differentiating between whole-joint models and models of individual ligaments. Common approaches to obtain three-dimensional ligament geometry are reviewed, with an emphasis on techniques that rely on volumetric medical image data. Considerations for the three-dimensional constitutive modeling of ligaments are reviewed in the context of ligament composition and structure. A novel approach to apply in situ strain to FE models of ligaments is described, and test problems are presented that demonstrate the efficacy of the approach. Approaches for the verification and validation of ligament FE models are outlined. The paper concludes with a discussion of future research directions.
本文的目的是描述使用有限元(FE)方法处理韧带计算建模技术方面的策略。描述了韧带力学有限元建模的策略,区分了全关节模型和单个韧带模型。回顾了获取三维韧带几何形状的常用方法,重点是依赖于容积医学图像数据的技术。在韧带组成和结构的背景下,回顾了韧带三维本构建模的注意事项。描述了一种将原位应变应用于韧带有限元模型的新方法,并给出了证明该方法有效性的测试问题。概述了韧带有限元模型的验证和确认方法。本文最后讨论了未来的研究方向。