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A Study on Construction Three-Dimensional Nonlinear Finite Element Model and Stress Distribution Analysis of Anterior Cruciate Ligament

机译:前十字韧带三维三维有限元建模及应力分布分析的研究

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摘要

To establish a finite element model that reflects the geometric characteristics of the normal anterior cruciate ligament (ACL), explore the approaches to model knee joint ligaments and analyze the mechanics of the model. A healthy knee joint specimen was subjected to three-dimensional laser scanning, and then a three-dimensional finite element model for the normal ACL was established using three-dimensional finite element software. Based on the model, the loads of the ACL were simulated to analyze the stress-strain relationship and stress distribution of the ACL. Using the ABAQUS software, a three-dimensional finite element model was established. The whole model contained 22,125 nodes and 46,411 units. In terms of geometric similarity and mesh precision, this model was superior to previous finite element models for the ACL. Through the introduction of material properties, boundary conditions, and loads, finite elements were analyzed and computed successfully. The relationship between overall nodal forces and the displacement of the ACL under anterior loads of the tibia was determined. In addition, the nephogram of the ACL stress spatial distribution was obtained. A vivid, three-dimensional model of the knee joint was established rapidly by using reverse engineering technology and laser scanning. The three-dimensional finite element method can be used for the ACL biomechanics research. The method accurately simulated the ACL stress distribution with the tibia under anterior loads, and the computational results were of clinical significance.
机译:要建立反映正常前交叉韧带(ACL)几何特征的有限元模型,探索模拟膝关节韧带的方法并分析模型的力学。对健康的膝关节标本进行三维激光扫描,然后使用三维有限元软件建立正常ACL的三维有限元模型。在此模型的基础上,模拟了ACL的载荷,以分析ACL的应力-应变关系和应力分布。使用ABAQUS软件,建立了三维有限元模型。整个模型包含22,125个节点和46,411个单元。在几何相似度和网格精度方面,该模型优于以前的ACL有限元模型。通过引入材料特性,边界条件和载荷,成功地分析和计算了有限元。确定了总节点力与胫骨前向载荷作用下ACL位移之间的关系。另外,获得了ACL应力空间分布的肾图。通过使用逆向工程技术和激光扫描,迅速建立了生动的膝关节三维模型。三维有限元方法可用于ACL生物力学研究。该方法准确地模拟了胫骨在前向载荷作用下ACL应力分布,计算结果具有临床意义。

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