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二维放射影像学纹理分析在评估三维骨微结构中的相关性。

Relevance of 2D radiographic texture analysis for the assessment of 3D bone micro-architecture.

作者信息

Apostol Lian, Boudousq Vincent, Basset Oliver, Odet Christophe, Yot Sophie, Tabary Joachim, Dinten Jean-Marc, Boiler Elodie, Kotzki Pierre-Olivier, Peyrin Françoise

机构信息

CREATIS, UMR CNRS 5515, Bât Blaise Pascal, F-69621 Villeurbanne Cedex, France.

出版信息

Med Phys. 2006 Sep;33(9):3546-56. doi: 10.1118/1.2211727.

Abstract

Although the diagnosis of osteoporosis is mainly based on dual x-ray absorptiometry, it has been shown that trabecular bone micro-architecture is also an important factor in regard to fracture risk. In vivo, techniques based on high-resolution x-ray radiography associated to texture analysis have been proposed to investigate bone micro-architecture, but their relevance for giving pertinent 3D information is unclear. Thirty-three calcaneus and femoral neck bone samples including the cortical shells (diameter: 14 mm, height: 30-40 mm) were imaged using 3D-synchrotron x-ray micro-CT at the ESRF. The 3D reconstructed images with a cubic voxel size of 15 microm were further used for two purposes: (1) quantification of three-dimensional trabecular bone micro-architecture, (2) simulation of realistic x-ray radiographs under different acquisition conditions. The simulated x-ray radiographs were then analyzed using a large variety of texture analysis methods (co-occurrence, spectral density, fractal, morphology, etc.). The range of micro-architecture parameters was in agreement with previous studies and rather large, suggesting that the population was representative. More than 350 texture parameters were tested. A small number of them were selected based on their correlation to micro-architectural morphometric parameters. Using this subset of texture parameters, multiple regression allowed one to predict up to 93% of the variance of micro-architecture parameters using three texture features. 2D texture features predicting 3D micro-architecture parameters other than BV/TV were identified. The methodology proposed for evaluating the relationships between 3D micro-architecture and 2D texture parameters may also be used for optimizing the conditions for radiographic imaging. Further work will include the application of the method to physical radiographs. In the future, this approach could be used in combination with DXA to refine osteoporosis diagnosis.

摘要

虽然骨质疏松症的诊断主要基于双能X线吸收法,但研究表明,小梁骨微结构也是骨折风险的一个重要因素。在活体中,已有人提出基于高分辨率X线摄影结合纹理分析的技术来研究骨微结构,但其提供相关三维信息的相关性尚不清楚。使用欧洲同步辐射装置(ESRF)的三维同步辐射X线显微CT对33个包括皮质壳(直径:14毫米,高度:30 - 40毫米)的跟骨和股骨颈骨样本进行成像。体素大小为15微米的三维重建图像进一步用于两个目的:(1)定量三维小梁骨微结构;(2)模拟不同采集条件下的真实X线平片。然后使用多种纹理分析方法(共生矩阵、光谱密度、分形、形态学等)对模拟的X线平片进行分析。微结构参数的范围与先前研究一致且相当大,表明该样本具有代表性。测试了超过350个纹理参数。基于它们与微结构形态计量参数相关性从中选择了少数几个参数。使用这个纹理参数子集,多元回归可以通过三个纹理特征预测高达93%的微结构参数方差。识别出了预测除骨体积分数(BV/TV)之外的三维微结构参数的二维纹理特征。所提出的评估三维微结构与二维纹理参数之间关系的方法也可用于优化射线照相成像条件。进一步的工作将包括将该方法应用于实际的X线平片。未来,这种方法可与双能X线吸收法(DXA)结合使用以完善骨质疏松症的诊断。

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