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SAPHIRE (scintillator avalanche photoconductor with high resolution emitter readout) for low dose x-ray imaging: Spatial resolution

机译:用于低剂量X射线成像的SAPHIRE(具有高分辨率发射器读数的闪烁体雪崩光电导体):空间分辨率

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摘要

An indirect flat panel imager (FPI) with programmable avalanche gain and field emitter array (FEA) readout is being investigated for low-dose and high resolution x-ray imaging. It is made by optically coupling a structured x-ray scintillator, e.g., thallium (Tl) doped cesium iodide (CsI), to an amorphous selenium (a-Se) avalanche photoconductor called high-gain avalanche rushing amorphous photoconductor (HARP). The charge image created by the scintillator∕HARP (SHARP) combination is read out by the electron beams emitted from the FEA. The proposed detector is called scintillator avalanche photoconductor with high resolution emitter readout (SAPHIRE). The programmable avalanche gain of HARP can improve the low dose performance of indirect FPI while the FEA can be made with pixel sizes down to 50 μm. Because of the avalanche gain, a high resolution type of CsI (Tl), which has not been widely used in indirect FPI due to its lower light output, can be used to improve the high spatial frequency performance. The purpose of the present article is to investigate the factors affecting the spatial resolution of SAPHIRE. Since the resolution performance of the SHARP combination has been well studied, the focus of the present work is on the inherent resolution of the FEA readout method. The lateral spread of the electron beam emitted from a 50 μm×50 μm pixel FEA was investigated with two different electron-optical designs: mesh-electrode-only and electrostatic focusing. Our results showed that electrostatic focusing can limit the lateral spread of electron beams to within the pixel size of down to 50 μm. Since electrostatic focusing is essentially independent of signal intensity, it will provide excellent spatial uniformity.
机译:正在研究具有可编程雪崩增益和场发射器阵列(FEA)读数的间接平板成像仪(FPI),以用于低剂量和高分辨率X射线成像。它是通过将结构化的X射线闪烁体(例如掺有T(Tl)的碘化铯(CsI))与称为高增益雪崩冲刷非晶光电导体(HARP)的非晶硒(a-Se)雪崩光电导体光学耦合而制成的。闪烁体∕ HARP(SHARP)组合产生的电荷图像被FEA发射的电子束读出。所提出的探测器称为具有高分辨率发射器读数(SAPHIRE)的闪烁体雪崩光电导体。 HARP的可编程雪崩增益可改善间接FPI的低剂量性能,而FEA的像素尺寸可低至50μm。由于雪崩增益,可使用高分辨率类型的CsI(Tl)(由于其较低的光输出而未广泛用于间接FPI)可用于改善高空间频率性能。本文的目的是研究影响SAPHIRE空间分辨率的因素。由于已对SHARP组合的分辨率性能进行了很好的研究,因此本研究的重点是FEA读数方法的固有分辨率。使用两种不同的电子光学设计:仅网状电极和静电聚焦,研究了从50μm×50μm像素FEA发射的电子束的横向扩散。我们的结果表明,静电聚焦可以将电子束的横向扩散限制在像素尺寸低至50μm的范围内。由于静电聚焦基本上与信号强度无关,因此它将提供出色的空间均匀性。

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    Li, Dan; Zhao, Wei;

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  • 年度 2008
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