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Low-dose phase contrast mammography with conventional x-ray sources

机译:低剂量相衬乳腺X线摄影与常规X射线源

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Purpose: To provide an x-ray phase contrast imaging (XPCI) method working with conventional sources that could be readily translated into clinical practice. XPCI shows potential in synchrotron studies but attempts at translating it for use with conventional sources are subject to limitations in terms of field of view, stability, exposure time, and possibly most importantly, delivered dose. Methods: Following the adaptation of our "edge- illumination" XPCI technique for use with conventional x-ray sources through the use of x-ray masks, the authors have further modified the design of such masks to allow further reducing the dose delivered to the sample without affecting the phase sensitivity of the method. Results: The authors have built a prototype based on the new mask design and used it to image ex vivo breast tissue samples containing malignant lesions. The authors compared images acquired with this prototype to those obtained with a conventional system. The authors demonstrate and quantify image improvements, especially in terms of microcalcification detection. On calcifications detected also by the conventional system, the authors measure contrast increases from five to nine fold; calcifications and other features were also detected which are completely invisible in the conventional image. Dose measurements confirmed that the above enhancements were achieved while delivering doses compatible with clinical practice. Conclusions: The authors obtained phase-related image enhancements in mammography by means of a system built with components available off-the-shelf that operates under exposure time and dose conditions compatible with clinical practice. This opens the way to a straightforward translation of phase enhanced imaging methods into clinical practice.
机译:目的:提供一种使用常规来源的X射线相衬成像(XPCI)方法,该方法可以轻松转换为临床实践。 XPCI在同步加速器研究中显示出潜力,但尝试将其翻译为与常规来源一起使用时,会受到视野,稳定性,暴露时间以及可能最重要的是输送剂量方面的限制。方法:在通过使用X射线掩模对我们的“边缘照明” XPCI技术进行改造以用于常规X射线源之后,作者进一步修改了此类掩模的设计,以允许进一步减少传递给X射线源的剂量。样品而不会影响方法的相位灵敏度。结果:作者基于新的面罩设计建立了一个原型,并将其用于对包含恶性病变的乳腺组织样本进行成像。作者将通过该原型获得的图像与通过常规系统获得的图像进行了比较。作者展示并量化了图像改进,尤其是在微钙化检测方面。在常规系统也检测到钙化的情况下,作者测量的对比度从五倍增加到九倍。还检测到钙化和其他特征,这些图像在常规图像中是完全不可见的。剂量测量证实在提供与临床实践兼容的剂量的同时实现了上述增强。结论:作者通过使用现成的组件构建的系统获得了乳房X线照相术中与相位相关的图像增强功能,该组件可在与临床实践相适应的暴露时间和剂量条件下运行。这为将相位增强成像方法直接转换为临床实践开辟了道路。

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