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Comparison of propagation- and grating-based x-ray phase-contrast imaging techniques with a liquid-metal-jet source

机译:基于传播和光栅的X射线相衬成像技术与液态金属喷射源的比较

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X-ray phase-contrast imaging has been developed as an alternative to conventional absorption imaging, partly for its dose advantage over absorption imaging at high resolution. Grating-based imaging (GBI) and propagation-based imaging (PBI) are two phase-contrast techniques used with polychromatic laboratory sources. We compare the two methods by experiments and simulations with respect to required dose. A simulation method based on the projection approximation is designed and verified with experiments. A comparison based on simulations of the doses required for detection of an object with respect to its diameter is presented, showing that for monochromatic radiation, there is a dose advantage for PBI for small features but an advantage for GBI at larger features. However, GBI suffers more from the introduction of polychromatic radiation, in this case so much that PBI gives lower dose for all investigated feature sizes. Furthermore, we present and compare experimental images of biomedical samples. While those support the dose advantage of PBI, they also highlight the GBI advantage of quantitative reconstruction of multimaterial samples. For all experiments a liquid-metal-jet source was used. Liquid-metal-jet sources are a promising option for laboratory-based phase-contrast imaging due to the relatively high brightness and small spot size.
机译:X射线相衬成像技术已经发展成为传统吸收成像技术的替代产品,部分原因是它在高分辨率下比吸收成像技术具有剂量优势。基于光栅的成像(GBI)和基于传播的成像(PBI)是用于多色实验室光源的两种相位对比技术。我们通过所需剂量的实验和模拟比较了这两种方法。设计了一种基于投影逼近的仿真方法,并进行了实验验证。提出了一种基于模拟的检测对象相对于其直径所需的剂量的比较,表明对于单色辐射,PBI对于小特征具有剂量优势,而GBI在较大特征上具有优势。但是,GBI受多色辐射的影响更大,在这种情况下,PBI对于所有研究的特征尺寸都会产生较低的剂量。此外,我们提出并比较了生物医学样品的实验图像。尽管这些支持PBI的剂量优势,但它们也凸显了多材料样品定量重建的GBI优势。对于所有实验,均使用液态金属喷射源。液态金属喷射源由于相对较高的亮度和较小的光斑尺寸,因此是用于基于实验室的相衬成像的有前途的选择。

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