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Development of a new generation of area detectors for portal imaging: High quantum efficiency direct-conversion MV flat panel imagers

机译:开发新一代区域探测器用于门岩成像:高量子效率直接转换MV平板平板图像

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Recently developed flat-panel detectors have been proven to have a much better image quality than conventional electronic portal imaging devices (EPIDs) used in radiation therapy. They are, however, not yet ideal for portal imaging application primarily due to the low x-ray absorption for megavoltage(MV) x-rays, i. e., low quantum efficiency (QE), typically on the order of 2-4% as compared to the theoretical limit of 100%. A significant increase of QE is desirable for applications such as MV cone-beam computed tomography (MVCT) and MV fluoroscopy. Our goal is to develop a new generation of area detectors for radiotherapy treatment verification, with a QE an order of magnitude higher than that of current flat-panel systems and an equivalent spatial resolution. In this paper, we will first discuss the rationale and the challenges in designing a high QE detector for portal imaging application and give an overview of previous designs and their limitations. We will then introduce our novel design for a high QE detector, which has a thick, dense x-ray direct-conversion layer coupled to a 2D active matrix for image storage and readout. The conversion layer is made of high-density metal elements to convert x-rays to electrons and sub-pixel sized cavities filled with an ionization medium (e.g., gas or a-Se) to convert the electrons to free charges that are collected on electrodes connected to the active matrix. The QE, spatial resolution, and sensitivity of the proposed detector have been modeled, and results will be presented. It is shown that this new detector will be quantum noise limited and have both a high QE and a high resolution. Thus, further development based on this novel design is warranted.
机译:最近开发的平板探测器已被证明具有比在放射治疗中使用的传统电子门户成像装置(ePID)更好的图像质量。然而,它们尚未适用于门岩成像应用,主要是由于MegaVoltage(MV)X射线的低X射线吸收,I。即,低量子效率(QE),通常大约为2-4%,与100%的理论限制相比。对于诸如MV锥形束计算机断层扫描(MVCT)和MV荧光透视的应用,QE的显着增加是理想的。我们的目标是开发新一代区域探测器,用于放射治疗验证,QE大于当前平板系统的数量级和等同的空间分辨率。在本文中,我们首先将讨论理由和设计高QE检测器的挑战,用于门户成像应用,并概述以前的设计及其限制。然后,我们将介绍我们的新设计,用于高QE检测器,其具有厚,致密的X射线直转化层,耦合到2D有源矩阵,用于图像存储和读出。转换层由高密度金属元件制成,以将X射线转换为填充有电离介质(例如,气体或A-SE)的电子和子像素尺寸的空腔,以将电子转换为在电极上收集的自由电荷连接到活动矩阵。已经建模的QE,空间分辨率和拟议检测器的灵敏度,并将提出结果。结果表明,该新检测器将是量子噪声限制,并且具有高QE和高分辨率。因此,有必要提供基于这部新颖设计的进一步发展。

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