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首页> 外文期刊>Journal of Imaging >Automated Analysis of Spatially Resolved X-ray Scattering and Micro Computed Tomography of Artificial and Natural Enamel Carious Lesions
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Automated Analysis of Spatially Resolved X-ray Scattering and Micro Computed Tomography of Artificial and Natural Enamel Carious Lesions

机译:人工和天然牙釉质龋病变的空间分辨X射线散射和微型计算机断层扫描自动分析

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Radiography has long been the standard approach to characterize carious lesions. Spatially resolved X-ray diffraction, specifically small-angle X-ray scattering (SAXS), has recently been applied to caries research. The aims of this combined SAXS and micro computed tomography (μCT) study were to locally characterize and compare the micro- and nanostructures of one natural carious lesion and of one artificially induced enamel lesion; and demonstrate the feasibility of an automated approach to combined SAXS and μCT data in segmenting affected and unaffected enamel. Enamel, demineralized by natural or artificial caries, exhibits a significantly reduced X-ray attenuation compared to sound enamel and gives rise to a drastically increased small-angle scattering signal associated with the presence of nanometer-size pores. In addition, X-ray scattering allows the assessment of the overall orientation and the degree of anisotropy of the nanostructures present. Subsequent to the characterization with μCT, specimens were analyzed using synchrotron radiation-based SAXS in transmission raster mode. The bivariate histogram plot of the projected data combined the local scattering signal intensity with the related X-ray attenuation from μCT measurements. These histograms permitted the segmentation of anatomical features, including the lesions, with micrometer precision. The natural and artificial lesions showed comparable features, but they also exhibited size and shape differences. The clear identification of the affected regions and the characterization of their nanostructure allow the artificially induced lesions to be verified against selected natural carious lesions, offering the potential to optimize artificial demineralization protocols. Analysis of joint SAXS and μCT histograms objectively segmented sound and affected enamel.
机译:放射线照相长期以来一直是表征龋病的标准方法。空间分辨X射线衍射,特别是小角度X射线散射(SAXS),最近已用于龋齿研究。这项结合SAXS和微计算机断层扫描(μCT)的研究的目的是局部表征和比较一种自然龋病病变和一种人工诱发的牙釉质病变的微观和纳米结构。并演示了将SAXS和μCT数据组合在一起的自动化方法在分割受影响和未受影响的牙釉质中的可行性。与天然搪瓷相比,天然或人造龋齿脱矿的搪瓷具有显着降低的X射线衰减,并引起与纳米尺寸的孔隙相关的小角度散射信号的急剧增加。另外,X射线散射允许评估存在的纳米结构的整体取向和各向异性程度。在用μCT进行表征之后,使用基于同步辐射的SAXS在透射光栅模式下对样品进行了分析。投影数据的双变量直方图将局部散射信号强度与来自μCT测量的相关X射线衰减相结合。这些直方图允许以微米精度对包括病变在内的解剖特征进行分割。天然和人工病变表现出可比的特征,但它们也表现出大小和形状差异。对受影响区域的清晰识别及其纳米结构的特征使得可以针对选定的天然龋齿来验证人工诱发的病变,从而提供优化人工脱矿质方案的潜力。联合SAXS和μCT直方图分析客观地分割了声音和受影响的牙釉质。

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