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Quantitative Imaging of the Microbubble Concentrations by Using an In-line Phase Contrast Tomosynthesis Prototype: A Preliminary Phantom Study

机译:通过使用在线相衬层析合成原型的微气泡浓度的定量成像:初步的幻影研究。

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The purpose of this study is to demonstrate the feasibility of using a high-energy in-line phase contrast tomosynthesis system to quantitatively imaging microbubbles in a tissue simulating phantom under a limited radiation dose. The imaging system used in the investigation was a bench top in-line phase contrast tomosynthesis prototype operated under 120 kVp tube voltage and 0.5 mA tube current. A prime beam filter made of 2.3 mm Cu, 0.8 mm Pb and 1.0 mm Al was employed to obtain as large as possible portion of x-ray photon energy higher than 60 keV. The tissue simulating phantom was built by three acrylic slabs and a wax slab to mimic a 40 mm thick compressed breast. There were two tiny-sized structures with average 1 mm depth engraved on the two different layers. The microbubble suspensions with different concentrations were injected into those tiny structures. The inline phase contrast angular projections acquired were used to reconstruct the in-plane slices of the tiny structures on different layers. The CNRs vs microbubble concentrations were investigated. As the result, the microbubble suspensions were clearly visible, showing higher CNR when compared with the areas with no microbubble. Furthermore, a monotonously increasing relation between CNRs and microbubble concentrations was observed after calculating the area CNR of the phase contrast tomosynthesis slices.
机译:这项研究的目的是证明在有限的辐射剂量下,使用高能在线相衬层析合成系统对模拟体模的组织中的微气泡进行定量成像的可行性。研究中使用的成像系统是台式串联相衬层析合成原型,其在120 kVp的管电压和0.5 mA的管电流下运行。采用由2.3 mm Cu,0.8 mm Pb和1.0 mm Al制成的原光束滤光片,以获取尽可能大的X射线光子能量高于60 keV的部分。模拟组织的人体模型由三个丙烯酸板和一个蜡板组成,以模仿40毫米厚的受压乳房。在两个不同的层上刻有两个平均尺寸为1毫米的微型结构。将具有不同浓度的微泡悬浮液注入那些微小的结构中。所获取的在线相衬角投影被用于在不同层上重建微小结构的平面内切片。研究了CNR与微气泡的浓度。结果,与没有微泡的区域相比,微泡悬浮液清晰可见,显示出更高的CNR。此外,在计算相衬层析合成薄片的CNR面积后,观察到CNR与微气泡浓度之间的单调增加关系。

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