首页> 外文会议>Physics of Medical Imaging pt.2; Progress in Biomedical Optics and Imaging; vol.7 no.28 >Comparison measurements of DQE for two flat panel detectors: Fluoroscopic detector vs. cone beam CT detector
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Comparison measurements of DQE for two flat panel detectors: Fluoroscopic detector vs. cone beam CT detector

机译:两种平板探测器的DQE的比较测量:荧光镜探测器与锥束CT探测器

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The physical performance of two flat panel detectors (FPD) has been evaluated using a standard x-ray beam quality set by IEC, namely RQA5. The FPDs evaluated in this study are based on an amorphous silicon photodiode array that is coupled to a thallium-doped Cesium Iodide scintillator and to a thin film transistor (TFT) array. One detector is the PaxScan 2520 that is designed for fluoro imaging, and has a small dynamic range and a large image lag. The other detector is the PaxScan 4030CB that is designed for cone beam CT, and has a large dynamic range (>16-bit), a reduced image lag and many imaging modes. Varian Medical Systems manufactured both detectors. The linearity of the FPDs was investigated by using an ionization chamber and aluminum filtration in order to obtain the beam quality. Since the FPDs are used in fluoroscopic mode, image lag of the FPD was measured in order to investigate its effect on this study, especially its effect on DQE. The spatial resolution of the FPDs was determined by obtaining the pre-sampling modulation transfer function for each detector. A sharp edge was used in accordance to IEC 62220-1. Next, the Normalized Noise Power Spectrum (NNPS) was calculated for various exposures levels at RQA5 radiation quality. Finally, the DQE of each FPD was obtained with a modified version of the international standard set by IEC 62220-1. The results show that the physical performance in DQE and MTF of the PaxScan 4030CB is superior to that of PaxScan2520.
机译:已使用IEC设定的标准X射线光束质量RQA5对两个平板探测器(FPD)的物理性能进行了评估。在这项研究中评估的FPD基于非晶硅光电二极管阵列,该阵列耦合到掺-的碘化铯闪烁体和薄膜晶体管(TFT)阵列。 PaxScan 2520是其中一种检测器,它专为荧光成像而设计,具有较小的动态范围和较大的图像滞后。另一台探测器是PaxScan 4030CB,它专为锥形束CT设计,具有大的动态范围(> 16位),减少的图像滞后和许多成像模式。瓦里安医疗系统公司制造了两个探测器。通过使用电离室和铝过滤来研究FPD的线性,以获得光束质量。由于FPD是在荧光镜模式下使用的,因此测量了FPD的图像滞后以便研究其对这项研究的影响,尤其是对DQE的影响。通过获得每个检测器的预采样调制传递函数来确定FPD的空间分辨率。根据IEC 62220-1使用了锋利的边缘。接下来,针对RQA5辐射质量下的各种暴露水平计算归一化噪声功率谱(NNPS)。最后,每个FPD的DQE都是由IEC 62220-1设定的国际标准的修改版本获得的。结果表明,PaxScan 4030CB在DQE和MTF中的物理性能优于PaxScan2520。

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