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Flat panel detector-based cone-beam volume CT angiography imaging: system evaluation

机译:基于平板探测器的锥形束体积CT血管造影成像:系统评估

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Preliminary evaluation of recently developed large-area flat panel detectors (FPDs) indicates that FPDs have some potential advantages: compactness, absence of geometric distortion and veiling glare with the benefits of high resolution, high detective quantum efficiency (DQE), high frame rate and high dynamic range, small image lag (>1%), and excellent linearity (/spl sim/1%). The advantages of the new FPD make it a promising candidate for cone-beam volume computed tomography (CT) angiography (CBVCTA) imaging. The purpose of this study is to characterize a prototype FPD-based imaging system for CBVCTA applications. A prototype FPD-based CBVCTA imaging system has been designed and constructed around a modified GE 8800 CT scanner. This system is evaluated for a CBVCTA imaging task in the head and neck using four phantoms and a frozen rat. The system is first characterized in terms of linearity and dynamic range of the detector. Then, the optimal selection of kVps for CBVCTA is determined and the effect of image lag and scatter on the image quality of the CBVCTA system is evaluated. Next, low-contrast resolution and high-contrast spatial resolution are measured. Finally, the example reconstruction images of a frozen rat are presented. The results indicate that the FPD-based CBVCT can achieve 2.75-1p/mm spatial resolution at 0% modulation transfer function (MTF) and provide more than enough low-contrast resolution for intravenous CBVCTA imaging in the head and neck with clinically acceptable entrance exposure level. The results also suggest that to use an FPD for large cone-angle applications, such as body angiography, further investigations are required.
机译:对最近开发的大面积平板探测器(FPD)的初步评估表明,FPD具有一些潜在的优势:紧凑,不存在几何畸变和面纱眩光,并具有高分辨率,高探测量子效率(DQE),高帧频和高动态范围,小的图像滞后(> 1%)和出色的线性度(/ spl sim / 1%)。新型FPD的优势使其成为锥束体积计算机断层扫描(CT)血管造影(CBVCTA)成像的有希望的候选者。这项研究的目的是为CBVCTA应用表征基于FPD的原型成像系统。基于原型FPD的CBVCTA成像系统已经设计并构建在改进的GE 8800 CT扫描仪周围。使用四个体模和一只冰冻的老鼠对该系统的头部和颈部CBVCTA成像任务进行了评估。首先根据检测器的线性度和动态范围对系统进行表征。然后,确定用于CBVCTA的kVps的最佳选择,并评估图像滞后和散射对CBVCTA系统图像质量的影响。接下来,测量低对比度分辨率和高对比度空间分辨率。最后,给出了冷冻大鼠的示例重建图像。结果表明,基于FPD的CBVCT在0%调制传递函数(MTF)时可达到2.75-1p / mm的空间分辨率,并为头颈部静脉CBVCTA成像提供足够的低对比度分辨率,并具有临床可接受的入口暴露水平。结果还表明,要将FPD用于大锥角应用,例如人体血管造影,还需要进一步研究。

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