X-ray differential phase contrast and dark-field computed tomography and radiography with microbubbles as contrast agent

Xiangyang Tang, Yi Yang
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引用次数: 3

Abstract

Motivated to improve the low contrast detectability of x-ray imaging in soft tissues, increasing effort has been devoted to the research and development of refraction-based x-ray phase contrast imaging. Among all existing implementations, the x-ray tube and grating based differential phase contrast imaging is of high potential to become an imaging modality for preclinical and eventually clinical applications. Based on our preliminary investigation and recognizing the clinical success of iodine contrast agent in conventional attenuation-based x-ray imaging, we propose the grating-based x-ray differential phase contrast and dark-field imaging method with microbubbles as the contrast agent. Via computer simulation, we investigate the feasibility of the proposed x-ray differential phase contrast and dark-field computed tomography in this work. Preliminary data show that at the detector cell dimension adequate for both clinical (>100μm) and preclinical (≤100μm) applications, the contrast between microbubbles and soft tissues in x-ray differential phase contrast and dark-field computed tomography images is substantially larger than its counterpart in the conventional attenuation-based CT, which encourages further in-depth investigation along this scientific and technological avenue.
用微泡作对比剂的x射线差相衬、暗场计算机断层扫描和射线照相
为了提高软组织x射线成像的低对比度可检测性,人们越来越多地致力于基于折射的x射线相衬成像的研究和开发。在所有现有的实现中,基于x射线管和光栅的差分相衬成像具有很高的潜力,可以成为临床前和最终临床应用的成像方式。在初步研究的基础上,认识到碘造影剂在传统的基于衰减的x线成像中的临床成功,我们提出了基于光栅的以微泡为造影剂的x线差相对比暗场成像方法。通过计算机模拟,我们研究了本文提出的x射线差相衬和暗场计算机断层扫描的可行性。初步数据表明,在适合临床(>100μm)和临床前(≤100μm)应用的探测器细胞尺寸下,x射线差相衬和暗场计算机断层扫描图像中的微泡与软组织之间的对比度大大大于传统基于衰减的CT图像,这鼓励沿着这一科技途径进一步深入研究。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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