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Progress in electron-multiplying CCD (EMCCD) based high-resolution high-sensitivity x-ray detector for fluoroscopy and radiography

机译:用于荧光检查和射线照相的基于电子倍增CCD(EMCCD)的高分辨率高灵敏度X射线探测器的进展

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摘要

A new high-resolution, high-sensitivity, low-noise x-ray detector based on EMCCDs has been developed. The EMCCD detector module consists of a 1kx1k, 8μm pixel EMCCD camera coupled to a CsI(Tl) scintillating phosphor via a fiber optic taper (FOT). Multiple modules can be used to provide the desired field-of-view (FOV). The detector is capable of acquisitions over 30fps. The EMCCD’s variable gain of up to 2000x for the pixel signal enables high sensitivity for fluoroscopic applications. With a 3:1 FOT, the detector can operate with a 144μm effective pixel size, comparable to current flat-panel detectors. Higher resolutions of 96 and 48μm pixel size can also be achieved with various binning modes. The detector MTFs and DQEs were calculated using a linear-systems analysis. The zero frequency DQE was calculated to be 59% at 74 kVp. The DQE for the 144μm pixel size was shown to exhibit quantum-noise limited behavior down to ~0.1μR using a conservative 30x gain. At this low exposure, gains above 30x showed limited improvements in DQE suggesting such increased gains may not be necessary. For operation down to 48μm pixel sizes, the detector instrumentation noise equivalent exposure (INEE), defined as the exposure where the instrumentation noise equals the quantum-noise, was <0.1μR for a 20x gain. This new technology may provide improvements over current flat-panel detectors for applications such as fluoroscopy and angiography requiring high frame rates, resolution, dynamic range and sensitivity while maintaining essentially no lag and very low INEE. Initial images from a prototype detector are also presented.
机译:已经开发了一种基于EMCCD的新型高分辨率,高灵敏度,低噪声X射线探测器。 EMCCD检测器模块由一个1kx1k,8μm像素的EMCCD摄像机组成,该摄像机通过光纤锥(FOT)耦合到CsI(Tl)闪烁磷光体。可以使用多个模块来提供所需的视野(FOV)。该探测器能够以超过30fps的速度进行采集。 EMCCD的像素信号可变增益高达2000倍,可为荧光镜应用提供高灵敏度。采用3:1 FOT,该检测器可以以144μm有效像素大小工作,与当前的平板检测器相当。各种装仓模式也可以实现96和48μm像素尺寸的更高分辨率。使用线性系统分析计算检测器的MTF和DQE。计算出在74 kVp时零频率DQE为59%。事实证明,使用保守的30倍增益,针对144μm像素尺寸的DQE表现出量子噪声受限的性能,低至〜0.1μR。在如此低的曝光率下,高于30倍的收益表明DQE的改善有限,这表明可能没有必要增加收益。对于小至48μm像素大小的操作,检测器仪器噪声当量曝光(INEE)定义为仪器噪声等于量子噪声的曝光,对于20倍增益而言,其值为<0.1μR。对于要求高帧速率,分辨率,动态范围和灵敏度,同时又基本保持无滞后和非常低的INEE的荧光检查和血管造影等应用,这项新技术可能会提供优于当前平板检测器的改进。还显示了来自原型检测器的初始图像。

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