Mathematical Modeling and Visualization of a Complex Stress State in Case of a Fracture of the Femoral Diaphysis

Q4 Computer Science
K. Krupin, M. Kislov, V.I. Bahmetev, E.M. Kildyushov
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引用次数: 0

Abstract

The purpose of this work is to establish the possibility of using the finite element analysis method to study complex stress states in case of a femur fracture with subsequent data visualization. Experimental data were obtained on a solid-state mathematical parametric model of the femur, created on the basis of computer tomogram data, and repeating studies on native biological objects. As a result of mathematical modeling, oblique transverse and helical fractures of the diaphysis of the femur with elements of helical deformation were studied. The application of finite element analysis made it possible to visualize and predict the stresses arising in bone tissue under the impact of a blunt solid object in a complex stress state and the morphological features of femoral shaft fractures under different torsional loading forces of the proximal part of the femur. The data on the mechanism and morphology of the femoral shaft fracture obtained during modeling are confirmed by the results of original full-scale experiments.
股骨干骺端骨折时复杂应力状态的数学建模与可视化
这项工作的目的是确定使用有限元分析方法研究股骨骨折时复杂应力状态的可能性,并将随后的数据可视化。实验数据是在计算机断层扫描数据的基础上创建的股骨固态数学参数模型上获得的,并对本地生物物体进行了重复研究。通过数学建模,研究了股骨干骺端的斜横向和螺旋形骨折以及螺旋形变形元素。通过应用有限元分析,可以直观地预测在复杂应力状态下钝性固体物体撞击骨组织时产生的应力,以及股骨近端不同扭转加载力下股骨干骨折的形态特征。建模过程中获得的股骨干骨折机理和形态数据得到了原始全尺寸实验结果的证实。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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来源期刊
Scientific Visualization
Scientific Visualization Computer Science-Computer Vision and Pattern Recognition
CiteScore
1.30
自引率
0.00%
发文量
20
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