首页> 外文期刊>Journal of biomechanical engineering. >Three-Dimensional Finite Element Analysis of the Effects of Ligaments on Human Sacroiliac Joint and Pelvis in Two Different Positions
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Three-Dimensional Finite Element Analysis of the Effects of Ligaments on Human Sacroiliac Joint and Pelvis in Two Different Positions

机译:三维有限元分析韧带对两种不同位置人骶髂关节和骨盆的影响

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摘要

To present the ligament effects on sacroiliac joint (SIJ) stability and human pelvis biomechanical characteristics in two different positions by using three-dimensional (3D) finite element (FE) models of pelvis. Based on the computed tomography (CT) data of human pelvis, three-dimensional FE models of human pelvis in sitting and standing positions were established, which include the bone (sacrum, ilium, and coccyx) and six ligaments (sacroiliac, sacrospinous, sacrotuberous, inguinal, superior pubic, and arcuate pubic ligaments). 600 N vertical load was applied at the upper surface of sacrum to analyze the stress and displacement distribution of pelvis and SIJ. The simulation results demonstrated that the maximum stresses of sacrum and ilium on SIJ contact surface were 5.63 MPa and 7.40 MPa in standing position and 7.44 MPa and 7.95 MPa in sitting position. The stresses of ligament dysfunction group were higher than that of health group, which increased by 22.6% and 35.7% in standing position and 25.2% and 43.6% in sitting position in sacrum and ilium. The maximum displacements located on the upper surface of sacrum, which were 0.13 mm and 1.04 mm in standing and sitting positions. Ligaments dysfunction group increased 30.7% and 9.6% than health group in standing and sitting positions. The integral displacement of pelvis was greater in sitting position. The location of stress concentration and displacement distribution of pelvic bone are closely resembled previous research results in two different positions. The simulation results may provide beneficial information and theoretical models for clinical research of pelvic fracture, joint movement, and ligament functional injuries, and so on.
机译:通过使用三维(3D)骨盆的三维(3D)有限元(Fe)模型,呈现对骶髂关节(SIJ)稳定性和人骨盆生物力学特性的韧带作用。基于人骨盆的计算断层扫描(CT)数据,建立了坐姿和站立位置的人骨盆的三维Fe模型,包括骨骼(骶骨,髂骨和尾声)和六种韧带(骶髂,无罪,圣洁,腹股沟,优越的耻骨和弓形韧带)。在骶骨的上表面施加600 n垂直载荷,以分析骨盆和Sij的应力和位移分布。仿真结果表明,SIJ接触表面上的骶骨和髂骨的最大应力为5.63MPa和7.40MPa,坐姿为7.44MPa和7.95 MPa。韧带功能障碍组的应力高于健康组,即在骶骨和髂骨中坐姿增加22.6%和35.7%,25.2%和43.6%。位于骶骨上表面上的最大位移,静置和坐姿为0.13mm和1.04mm。韧带功能障碍组比站立和坐姿的卫生组增加了30.7%和9.6%。坐姿的骨盆的整体位移更大。骨盆骨的应力浓度和位移分布的位置非常类似于以前的两种不同位置。仿真结果可以为骨盆骨折,关节运动和韧带功能损伤等临床研究提供有益信息和理论模型,等等。

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