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Abnormal breast tissue imaging based on multi-energy x-ray

机译:基于多能量X射线的异常乳房组织成像

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The dual or multi-energy x-ray technique facilitates to generate tissue-selective images, by exploiting tissue-specific energy dependence of x-ray attenuation. An abnormal breast is considered to be a mixture of adipose, glandular, and abnormal tissues, but three tissues cannot be selectively decomposed because the total attenuation of a tissue is represented by only two attenuation basis functions at diagnostic energy range. This paper presents a novel method to selectively represent abnormal breast tissue, using polyenergetic multi-energy x-ray. We show that an abnormal tissue can be revealed from the total thickness map, which is virtually constructed by assuming a healthy and compressed breast. Specifically, regression analysis is first performed using the multi-energy images of the prepared calibration phantom that consists of two basis materials. Total thickness map is then constructed by linearly combining thickness maps of basis materials, where the optimal weights for combination are determined so that the uniformity of total breast thickness is maximized. It is noted that the proposed method does not need accurate attenuation coefficients of breast tissues. Simulation results show that the proposed method dramatically improves the detectability of mass that is obscured by normal structures.
机译:通过利用X射线衰减的组织特异性能量依赖性,双向或多能量X射线技术有助于产生组织选择性图像。异常乳房被认为是脂肪,腺,腺体和异常组织的混合物,但是由于组织的总衰减仅在诊断能量范围内仅表示三个组织而不能选择性地分解。本文呈现了一种使用多能量多能量X射线选择性地代表异常乳房组织的新方法。我们表明,通过假设健康和压缩的乳房,可以从总厚度图揭示异常组织。具体地,首先使用由两种基础材料组成的准备的校准幻像的多能量图像来执行回归分析。然后通过线性地组合基材的厚度图来构造总厚度图,其中确定组合的最佳重量使得总乳房厚度的均匀性最大化。应注意,该方法不需要准确的乳腺组织衰减系数。仿真结果表明,该方法显着提高了正常结构模糊的质量的可检测性。

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