...
首页> 外文期刊>Journal of bone and mineral research: the official journal of the American Society for Bone and Mineral Research >Fractal dimension of trabecular bone projection texture is related to three-dimensional microarchitecture.
【24h】

Fractal dimension of trabecular bone projection texture is related to three-dimensional microarchitecture.

机译:小梁骨投影纹理的分形维数与三维微结构有关。

获取原文
获取原文并翻译 | 示例
   

获取外文期刊封面封底 >>

       

摘要

The purpose of this work was to understand how fractal dimension of two-dimensional (2D) trabecular bone projection images could be related to three-dimensional (3D) trabecular bone properties such as porosity or connectivity. Two alteration processes were applied to trabecular bone images obtained by magnetic resonance imaging: a trabeculae dilation process and a trabeculae removal process. The trabeculae dilation process was applied from the 3D skeleton graph to the 3D initial structure with constant connectivity. The trabeculae removal process was applied from the initial structure to an altered structure having 99% of porosity, in which both porosity and connectivity were modified during this second process. Gray-level projection images of each of the altered structures were simply obtained by summation of voxels, and fractal dimension (Df) was calculated. Porosity (phi) and connectivity per unit volume (Cv) were calculated from the 3D structure. Significant relationships were found between Df, phi, and Cv. Df values increased when porosity increased (dilation and removal processes) and when connectivity decreased (only removal process). These variations were in accordance with all previous clinical studies, suggesting that fractal evaluation of trabecular bone projection has real meaning in terms of porosity and connectivity of the 3D architecture. Furthermore, there was a statistically significant linear dependence between Df and Cv when phi remained constant. Porosity is directly related to bone mineral density and fractal dimension can be easily evaluated in clinical routine. These two parameters could be associated to evaluate the connectivity of the structure.
机译:这项工作的目的是了解二维(2D)小梁骨投影图像的分形维数如何与三维(3D)小梁骨属性(例如孔隙率或连通性)相关。将两种更改过程应用于通过磁共振成像获得的小梁骨图像:小梁扩张过程和小梁切除过程。将小梁扩张过程从3D骨架图应用于具有恒定连通性的3D初始结构。将小梁的去除过程从初始结构应用于具有99%孔隙率的更改结构,其中在第二个过程中同时修改了孔隙率和连通性。通过对体素求和,可以简单地获得每个更改后的结构的灰度投影图像,并计算分形维数(Df)。从3D结构计算出孔隙率(phi)和每单位体积的连通性(Cv)。发现Df,phi和Cv之间存在重要关系。当孔隙度增加(扩张和去除过程)和连通性降低(仅去除过程)时,Df值增加。这些变化与以前的所有临床研究一致,表明小梁骨投影的分形评估在3D架构的孔隙率和连通性方面具有真正的意义。此外,当phi保持恒定时,Df和Cv之间存在统计学上显着的线性相关性。孔隙率与骨矿物质密度直接相关,在临床常规中可以很容易地评估分形维数。这两个参数可以关联起来以评估结构的连通性。

著录项

相似文献

  • 外文文献
  • 中文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号