Department of Radiology, Cancer Hospital of China Medical University, Liaoning Cancer Hospital & Institute, Shenyang, China.
Department of Radiology, Shengjing Hospital of China Medical University, Shenyang, China.
BMC Musculoskelet Disord. 2022 May 14;23(1):455. doi: 10.1186/s12891-022-05401-x.
Based on the Digital Imaging and Communications in Medicine (DICOM) data of three-dimensional magnetic resonance imaging (3D-MRI), finite element models of the hip joints of children with developmental dysplasia of the hip were established. The primary objectives included simulation and analysis of the finite element model pre- and post-closed reduction under different stances and loads, and evaluation of the size and distribution of von Mises stress in the acetabulum and femoral head pre- and post-operation and the short-term effects.
Acetabular index measurements of both the unaffected and affected sides were conducted, alongside International Hip Dysplasia Institute (IHDI) classification of the affected hip. Establishing the finite element model of both the affected and unaffected hips was based on the 3D-T1WI sequence DICOM data, using Mimics, 3-matic, and Ansys software, before and after closed reduction surgery. The size and distribution data of von Mises stress on the affected side of the acetabulum and femoral head were collected pre- and post-operation.
The study indicated that the increasing acetabular index of the affected hip was directly proportional to the increasing severity based on IHDI classification (P < 0.05). Preoperative IHDI classification significantly correlated with the von Mises stress (r = 0.560-0.569, 0.562-0.564, P < 0.05). Under different stances and load conditions, the von Mises stress on the affected side post-operation was lower than that noted pre-operation (P < 0.01), while that on the acetabulum increased proportionally to the load. Although the magnitude and distribution of von Mises stress on the affected side of the acetabulum were similar to those on the healthy side post-operation, there were statistical differences between the two (P < 0.01). The von Mises stress of the lateral column of the femoral head post-operation was significantly lower than that noted pre-operation (P < 0.01). While the high-stress points of the lateral column disappeared post-operation, the von Mises stress was evenly distributed in the femoral head.
The 3D-MRI finite element could provide the von Mises stress value and distribution characteristics of the acetabulum and femoral head pre- and post-operation. Closed reduction can, therefore, improve the size and distribution of von Mises stress on the affected acetabulum and femoral head.
基于三维磁共振成像(3D-MRI)的数字成像和通信(DICOM)数据,建立了发育性髋关节发育不良儿童髋关节的有限元模型。主要目的包括模拟和分析不同体位和负荷下闭合复位前后的有限元模型,并评估手术前后髋臼和股骨头的von Mises 应力大小和分布以及短期效果。
对双侧髋臼指数进行测量,同时对患髋进行国际髋关节发育不良协会(IHDI)分类。基于 3D-T1WI 序列 DICOM 数据,使用 Mimics、3-matic 和 Ansys 软件,在闭合复位前后建立患侧和健侧髋关节的有限元模型。收集手术前后患侧髋臼和股骨头 von Mises 应力的大小和分布数据。
研究表明,根据 IHDI 分类,患髋髋臼指数的增加与严重程度成正比(P<0.05)。术前 IHDI 分类与 von Mises 应力显著相关(r=0.560-0.569,0.562-0.564,P<0.05)。在不同体位和负荷条件下,术后患侧的 von Mises 应力低于术前(P<0.01),而髋臼处的 von Mises 应力则与负荷成正比增加。尽管术后患侧髋臼的 von Mises 应力大小和分布与健侧相似,但两者之间存在统计学差异(P<0.01)。术后股骨头外侧柱的 von Mises 应力明显低于术前(P<0.01)。术后外侧柱的高应力点消失,股骨头内的 von Mises 应力分布均匀。
3D-MRI 有限元法可提供手术前后髋臼和股骨头的 von Mises 应力值和分布特征。闭合复位可以改善患侧髋臼和股骨头的 von Mises 应力大小和分布。