首页> 外文会议>Medical Imaging 2003: Physics of Medical Imaging >Energy-Dependent Quantum Detective Efficiency (QDE) Measurements of a Photon-Counting CdTe Detector Array used for the Scanning-Beam Digital X-Ray (SBDX) System
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Energy-Dependent Quantum Detective Efficiency (QDE) Measurements of a Photon-Counting CdTe Detector Array used for the Scanning-Beam Digital X-Ray (SBDX) System

机译:用于扫描束数字X射线(SBDX)系统的光子计数CdTe检测器阵列的能量依赖性量子检测效率(QDE)测量

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The Scanning-Beam Digital X-ray (SBDX) system utilizes a scanning x-ray pencil beam and a small-area detector array for low-dose cardiac angiography with tomographic imaging capabilities. For the system to provide adequate signal-to-noise ratios, the multi-element detector must be highly efficient and capable of high photon count rates. Cadmium telluride (CdTe) is well suited to these purposes. The CdTe SBDX detector is a direct-conversion photon-counting device consisting of 2304 elements. The efficiency of the detector is a function of several factors including the incident photon energy, the fluorescence properties of CdTe, and the discriminator threshold that determines whether sufficient energy was deposited in an element to register a count. For maximum efficiency, the discriminator threshold must be set low enough to detect CdTe k-fluorescence photons (23-31 keV), but not so low as to register false counts from electronic noise. The purpose of this investigation was to evaluate the energy-dependent quantum detective efficiency (QDE) of a new lower-noise SBDX detector design and to determine whether adequately low thresholds can be achieved. Experiments were performed using metal fluorescer foils to generate quasi-monochromatic x-ray beams with energies of 17.5, 25.3, and 46.0 keV. The resulting spectral purities were high, although fluence rates were low. The measured QDE values at 17.5, 25.3, and 46.0 keV were 60%, 76% and 86% respectively.
机译:扫描束数字X射线(SBDX)系统利用扫描X射线笔形束和小面积检测器阵列进行具有断层成像功能的低剂量心脏血管造影。为了使系统提供足够的信噪比,多元素检测器必须高效且具有高光子计数率。碲化镉(CdTe)非常适合这些目的。 CdTe SBDX检测器是由2304个元素组成的直接转换光子计数设备。检测器的效率是几个因素的函数,包括入射光子能量,CdTe的荧光性质以及鉴别器阈值,该鉴别器阈值确定元素中是否沉积了足够的能量来计数。为了获得最大效率,必须将鉴别器阈值设置得足够低以检测CdTe k荧光光子(23-31 keV),但又不能设置得太低以至于不能记录电子噪声引起的错误计数。这项研究的目的是评估新的低噪声SBDX检测器设计的能量依赖型量子检测效率(QDE),并确定是否可以实现足够低的阈值。使用金属荧光增白剂箔进行了实验,以产生能量为17.5、25.3和46.0 keV的准单色X射线束。尽管通量率很低,但产生的光谱纯度却很高。在17.5、25.3和46.0 keV下测得的QDE值分别为60%,76%和86%。

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