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Practical method for photon fluency evaluation of digital X-ray image system

机译:数字X射线图像系统光子流利性评估的实用方法

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摘要

Quantum detective efficiency (DQE) is referred in literature as the most robust object-independent parameter for characterization of radiation detectors efficiency. DQE evaluation is particularly important in digital X-ray detectors, where the efficiency loss implies in image quality degradation and increase of patient exposed radiation dose. However, DQE cannot be evaluated directly. Its evaluation is derived of four other measurements: the modulation transfer function (MTF), the noise power spectrum (NFS), the gamma factor (/spl gamma/) and the photon fluency (/spl Phi/). The photon fluency has a not easy experimental evaluation, being calculated by the integral of the X-ray radiation emission spectrum, using spectrophotometers or X-ray tube mathematical modeling. These approaches may lead to errors. In this study, photon fluency was extrapolated from the measurements of absorbed dose and of half value layer, using monochromatic radiation. Assuming this restriction, the photon fluency can be evaluated using only a conventional dosimeter. Therefore, this technique is compatible with the investments allocated for regular services of preventive maintenance and image quality control. As an evaluation of the viability in using this methodology in clinical environment, a DQE evaluation routine was implemented for the Digora (Soredex, Helsink, Finland) dental digital X-ray system with very good results that agreed with those obtained with conventional techniques.
机译:量子探测效率(DQE)在文献中被称为表征辐射探测器效率的最可靠的独立于对象的参数。 DQE评估在数字X射线检测器中尤其重要,在数字X射线检测器中,效率损失意味着图像质量下降和患者暴露的辐射剂量增加。但是,不能直接评估DQE。它的评估来自其他四个测量结果:调制传递函数(MTF),噪声功率谱(NFS),伽马因子(/ spl gamma /)和光子流利度(/ spl Phi /)。使用分光光度计或X射线管数学模型,通过X射线辐射发射光谱的积分来计算光子流利度,这是一项不容易的实验评估。这些方法可能会导致错误。在这项研究中,使用单色辐射从吸收剂量和半值层的测量值中推断出光子流利度。假设有此限制,则仅使用常规剂量计就可以评估光子流利度。因此,该技术与为预防性维护和图像质量控制的常规服务分配的投资兼容。为了评估在临床环境中使用此方法的可行性,对Digora(Soredex,Helsink,芬兰)牙科数字X射线系统实施了DQE评估程序,其效果非常好,与传统技术相符。

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