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Energy response calibration of photon-counting detectors using x-ray fluorescence: a feasibility study

机译:使用X射线荧光的光子计数探测器的能量响应校准:可行性研究

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Accurate energy calibration is critical for the application of energy-resolved photon-counting detectors in spectral imaging. The aim of this study is to investigate the feasibility of energy response calibration and characterization of a photon-counting detector using x-ray fluorescence. A comprehensive Monte Carlo simulation study was performed using Geant4 Application for Tomographic Emission (GATE) to investigate the optimal technique for x-ray fluorescence calibration. Simulations were conducted using a 100 kVp tungsten-anode spectra with 2.7 mm Al filter for a single pixel cadmium telluride (CdTe) detector with 3 x 3 mm(2) in detection area. The angular dependence of x-ray fluorescence and scatter background was investigated by varying the detection angle from 20 degrees to 170 degrees with respect to the beam direction. The effects of the detector material, shape, and size on the recorded x-ray fluorescence were investigated. The fluorescent material size effect was considered with and without the container for the fluorescent material. In order to provide validation for the simulation result, the angular dependence of x-ray fluorescence from five fluorescent materials was experimentally measured using a spectrometer. Finally, eleven of the fluorescent materials were used for energy calibration of a CZT-based photon-counting detector. The optimal detection angle was determined to be approximately at 120 degrees with respect to the beam direction, which showed the highest fluorescence to scatter ratio (FSR) with a weak dependence on the fluorescent material size. The feasibility of x-ray fluorescence for energy calibration of photon-counting detectors in the diagnostic x-ray energy range was verified by successfully calibrating the energy response of a CZT-based photon-counting detector. The results of this study can be used as a guideline to implement the x-ray fluorescence calibration method for photon-counting detectors in a typical imaging laboratory.
机译:准确的能量校准对于在光谱成像中使用能量分辨光子计数检测器至关重要。这项研究的目的是研究使用X射线荧光进行能量响应校准和表征光子计数检测器的可行性。使用Geant4层析成像发射(GATE)应用程序进行了全面的蒙特卡罗模拟研究,以研究X射线荧光校准的最佳技术。使用100 kVp钨阳极光谱和2.7 mm Al滤光片对检测面积为3 x 3 mm(2)的单像素碲化镉(CdTe)检测器进行了仿真。通过将检测角度相对于光束方向从20度更改为170度,研究了X射线荧光和散射背景的角度依赖性。研究了探测器材料,形状和大小对记录的X射线荧光的影响。考虑有和没有荧光材料容器的荧光材料尺寸效应。为了提供对模拟结果的验证,使用分光计通过实验测量了来自五种荧光材料的X射线荧光的角度依赖性。最后,将11种荧光材料用于基于CZT的光子计数检测器的能量校准。最佳检测角度被确定为相对于光束方向大约为120度,这显示出最高的荧光散射比(FSR),并且对荧光材料尺寸的依赖性较小。通过成功地校准基于CZT的光子计数探测器的能量响应,验证了X射线荧光在诊断X射线能量范围内进行光子计数探测器能量校准的可行性。这项研究的结果可以用作在典型的成像实验室中为光子计数检测器实施X射线荧光校准方法的指南。

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