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Design, Characterization, and Modeling for a Modular High-Resolution Solid-State X-Ray Image Intensifier (SSXII)

机译:模块化高分辨率固态 X射线图像增强器(SSXII)的设计,表征和建模

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摘要

A high resolution x-ray imaging system designated the solid state x-ray image intensifier (SSXII) is being developed as a potential replacement of conventional lower-resolution x-ray detectors for neurovascular interventions. The SSXII consists of a CsI(Tl) phosphor to convert x-rays to light, a fiber optic taper to extend the field-of-view and to couple the phosphor to an Electron-Multiplying CCD (EMCCD) which has a built-in gain to boost the signal above the read-out noise floor. A parallel cascade linear-system model is explored and applied to quantitatively analyze the signal and noise transfer at each stage, and optimize the detector performance. The modulation transfer function (MTF), detective quantum efficiency (DQE) and frequency dependent instrumentation noise equivalent exposure (INEE) can be obtained from the theoretical model and experimental measurement. Agreement of these results validates the effectiveness of the model. Finally, compared with the traditional flat-panel detector (FPD), the SSXII exhibits better performance with higher spatial resolution, higher DQE and lower INEE.
机译:正在开发一种称为固态X射线图像增强器(SSXII)的高分辨率X射线成像系统,以替代用于神经血管干预的常规低分辨率X射线探测器。 SSXII由一个CsI(Tl)磷光体(用于将X射线转换为光),一个光纤锥度(用于扩展视场)以及将磷光体耦合到内置电子倍增CCD(EMCCD)组成。增益以将信号提升到读出本底噪声以上。探索并应用并行级联线性系统模型,以定量分析每个阶段的信号和噪声传输,并优化检测器性能。可以从理论模型和实验测量中获得调制传递函数(MTF),探测量子效率(DQE)和与频率有关的仪器噪声等效暴露(INEE)。这些结果的一致性验证了该模型的有效性。最后,与传统的平板探测器(FPD)相比,SSXII具有更好的性能,具有更高的空间分辨率,更高的DQE和更低的INEE。

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