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使用微泡作为高能 X 射线在线相位对比成像的造影剂:演示与对比研究。

Using Microbubble as Contrast Agent for High-Energy X-Ray In-line Phase Contrast Imaging: Demonstration and Comparison Study.

出版信息

IEEE Trans Biomed Eng. 2018 May;65(5):1117-1123. doi: 10.1109/TBME.2017.2741942. Epub 2017 Aug 21.

Abstract

The ability of microbubbles to benefit the imaging quality of high-energy in-line phase contrast as compared with conventional low-energy contact mode radiography was investigated. The study was conducted by comparing in-line phase contrast imaging with conventional contact-mode projection imaging under the same dose delivered to a phantom. A custom-designed phantom was employed to simulate a segment of human blood vessel injected with microbubble suspensions. The microbubbles were suspended in deionized water to obtain different volume concentrations. The area contrast-to-noise ratio (CNR) values corresponding to both imaging methods were measured for different microbubble volume concentrations. The phase contrast images were processed by phase-attenuation duality phase retrieval to preserve the imaging quality. Comparison of the resultant CNR values indicates that the microbubble suspension images deliver a higher CNR than the water-only image, with monotonically increasing trends between the CNR values and microbubble concentrations. Compared to low-energy conventional images of the microbubble suspensions, high-energy in-line phase contrast CNRs are lower at high concentrations and are comparable, even better than, at low concentrations. This result suggests that 1) the performance of copolymer-shell microbubble employed in this study as x-ray contrast agent is constrained by the detective quantum efficiency of the system and the attenuation properties of the shell materials, 2) the phase-attenuation duality phase retrieval method has the potential to preserve image quality for areas with low concentration of microbubbles, and 3) the selection of microbubble products as a phase contrast agent may follow criteria of minimizing the impact of absorption attenuation properties of the shells and maximizing the difference factor of electron densities.

摘要

研究了与传统低能接触模式射线照相相比,微泡在高能直线相位对比成像中改善成像质量的能力。该研究通过在相同剂量下将直线相位对比成像与传统接触模式投影成像进行比较来进行。使用定制的仿体模拟了注入微泡悬浮液的人体血管段。将微泡悬浮在去离子水中以获得不同的体积浓度。对于不同的微泡体积浓度,测量了两种成像方法对应的相位对比图像的面积对比噪声比(CNR)值。通过相位衰减对偶相位检索处理相位对比图像以保持成像质量。对所得 CNR 值的比较表明,与仅含水溶液的图像相比,微泡悬浮液图像提供了更高的 CNR,并且 CNR 值与微泡浓度之间呈单调递增趋势。与微泡悬浮液的低能传统图像相比,在高浓度下,高能直线相位对比 CNR 较低,而在低浓度下则相当,甚至更好。该结果表明:1)本研究中使用的共聚物壳微泡作为 X 射线造影剂的性能受到系统检测量子效率和壳材料衰减特性的限制;2)相位衰减对偶相位检索方法具有保留低浓度微泡区域图像质量的潜力;3)微泡产品作为相衬造影剂的选择可能遵循最小化壳的吸收衰减特性的影响和最大化电子密度差因子的标准。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/0456/5821607/5184bcbc58ca/nihms916045f1.jpg

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