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Prospective-gated cardiac micro-CT imaging of free-breathing mice using carbon nanotube field emission x-ray

机译:使用碳纳米管场发射X射线对自由呼吸小鼠进行前瞻性门控心脏微CT成像

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摘要

>Purpose: Carbon nanotube (CNT) based field emission x-ray source technology has recently been investigated for diagnostic imaging applications because of its attractive characteristics including electronic programmability, fast switching, distributed source, and multiplexing. The purpose of this article is to demonstrate the potential of this technology for high-resolution prospective-gated cardiac micro-CT imaging.>Methods: A dynamic cone-beam micro-CT scanner was constructed using a rotating gantry, a stationary mouse bed, a flat-panel detector, and a sealed CNT based microfocus x-ray source. The compact single-beam CNT x-ray source was operated at 50 KVp and 2 mA anode current with 100 μm×100 μm effective focal spot size. Using an intravenously administered iodinated blood-pool contrast agent, prospective cardiac and respiratory-gated micro-CT images of beating mouse hearts were obtained from ten anesthetized free-breathing mice in their natural position. Four-dimensional cardiac images were also obtained by gating the image acquisition to different phases in the cardiac cycle.>Results: High-resolution CT images of beating mouse hearts were obtained at 15 ms temporal resolution and 6.2 lp∕mm spatial resolution at 10% of system MTF. The images were reconstructed at 76 μm isotropic voxel size. The data acquisition time for two cardiac phases was 44±9 min. The CT values observed within the ventricles and the ventricle wall were 455±49 and 120±48 HU, respectively. The entrance dose for the acquisition of a single phase of the cardiac cycle was 0.10 Gy.>Conclusions: A high-resolution dynamic micro-CT scanner was developed from a compact CNT microfocus x-ray source and its feasibility for prospective-gated cardiac micro-CT imaging of free-breathing mice under their natural position was demonstrated.
机译:>目的:最近,基于碳纳米管(CNT)的场发射X射线源技术已经被研究用于诊断成像应用,因为它具有吸引人的特性,包括电子可编程性,快速切换,分布式源和多路复用。本文的目的是演示该技术在高分辨率前瞻性门控心脏微CT成像中的潜力。>方法:使用旋转龙门架构造动态锥束微CT扫描仪,固定鼠标床,平板探测器和基于CNT的密封微焦点x射线源。紧凑型单束CNT x射线源在50 KVp和2 mA阳极电流下工作,有效焦点尺寸为100μm×100μm。使用静脉注射的碘化血池造影剂,从十只处于自然位置的麻醉的自由呼吸小鼠获得了跳动的小鼠心脏的前瞻性心脏和呼吸门控微CT图像。通过将图像采集选通到心动周期的不同阶段,也可以获得四维心脏图像。>结果:在15 ms的时间分辨率和6.2 lp ∕下获得了跳动的小鼠心脏的高分辨率CT图像。系统MTF的10%时的毫米空间分辨率。以各向同性体素尺寸为76μm重建图像。两个心脏阶段的数据采集时间为44±9分钟。在心室和心室壁内观察到的CT值分别为455±49 HU和120±48 HU。用于获取心动周期单相的入射剂量为0.10 Gy。>结论:由紧凑型CNT微焦点x射线源研制出高分辨率动态微CT扫描仪,其可行性在自然位置下,对自由呼吸小鼠的前瞻性门控心脏显微CT成像进行了演示。

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