Griffiths J A, Royle G J, Hanby A M, Horrocks J A, Bohndiek S E, Speller R D
Department of Medical Physics and Bioengineering, University College London, Gower Street, London, UK.
Phys Med Biol. 2007 Oct 21;52(20):6151-64. doi: 10.1088/0031-9155/52/20/005. Epub 2007 Oct 1.
Identification of specific tissue types in conventional mammographic examinations is extremely limited. However, the use of x-ray diffraction effects during imaging has the potential to characterize the tissue types present due to the fact that each tissue type produces its own unique diffraction signature. Nevertheless, the analysis and categorization of these diffraction signatures by tissue type can be hampered by the inhomogeneous nature of breast tissue, leading to categorization errors where several types are present. This work aims to reduce sample categorization errors by combining spectral diffraction signature collection with sample imaging, giving more detailed data on the composition of each sample. Diffraction microCT was carried out on 19 unfixed breast tissue samples using an energy resolving translate-rotate CT system. High-resolution transmission microCT images were also recorded for comparison and sample composition analysis. Following imaging, the samples were subjected to histopathological analysis. Reconstructing on various momentum transfer regions allows different tissue types to be identified in the diffraction images. Results show a correlation between measured x-ray diffraction images and stained histopathological tissue sections. X-ray diffraction signatures generated from the measured data were categorized and analysed, with a t-test indicating that they have the potential for use in tissue type identification.
在传统乳腺钼靶检查中,对特定组织类型的识别极为有限。然而,在成像过程中利用X射线衍射效应有可能对存在的组织类型进行表征,因为每种组织类型都会产生其独特的衍射特征。尽管如此,由于乳腺组织的不均匀性质,按组织类型对这些衍射特征进行分析和分类可能会受到阻碍,导致在存在多种类型的情况下出现分类错误。这项工作旨在通过将光谱衍射特征收集与样本成像相结合来减少样本分类错误,从而提供关于每个样本组成的更详细数据。使用能量分辨平移-旋转CT系统对19个未固定的乳腺组织样本进行了衍射显微CT扫描。还记录了高分辨率透射显微CT图像用于比较和样本成分分析。成像后,对样本进行组织病理学分析。在不同的动量传递区域进行重建可以在衍射图像中识别出不同的组织类型。结果显示测量的X射线衍射图像与染色的组织病理学切片之间存在相关性。对测量数据生成的X射线衍射特征进行了分类和分析,t检验表明它们有潜力用于组织类型识别。