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首页> 外文期刊>Nuclear Instruments & Methods in Physics Research. Section A, Accelerators, Spectrometers, Detectors and Associated Equipment >Conception and characterization of a virtual coplanar grid for a 11×11 pixelated CZT detector
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Conception and characterization of a virtual coplanar grid for a 11×11 pixelated CZT detector

机译:11×11像素化CZT检测器的虚拟共面网格的概念和特征

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摘要

Due to the low mobility of holes in CZT, commercially available detectors with a relatively large volume typically use a pixelated anode structure. They are mostly used in imaging applications and often require a dense electronic readout scheme. These large volume detectors are also interesting for high-sensitivity applications and a CZT-based blood gamma counter was developed from a 20×20×15 mm~3 crystal available commercially and having a 11×11 pixelated readout scheme. A method is proposed here to reduce the number of channels required to use the crystal in a high-sensitivity counting application, dedicated to pharmacokinetic modelling in PET and SPECT. Inspired by a classic coplanar anode, an implementation of a virtual coplanar grid was done by connecting the 121 pixels of the detector to form intercalated bands. The layout, the front-end electronics and the characterization of the detector in this 2-channel anode geometry is presented. The coefficients required to compensate for electron trapping in CZT were determined experimentally to improve the performance. The resulting virtual coplanar detector has an intrinsic efficiency of 34% and an energy resolution of 8% at 662 keV. The detector's response was linear between 80 keV and 1372 keV. This suggests that large CZT crystals offer an excellent alternative to scintillation detectors for some applications, especially those where high-sensitivity and compactness are required.
机译:由于CZT中空穴的迁移率低,因此市售的体积较大的检测器通常使用像素化阳极结构。它们主要用于成像应用,并且经常需要密集的电子读出方案。这些大体积检测器对于高灵敏度应用也很有趣,并且基于CZT的血伽玛计数器是由市售的20×20×15 mm〜3晶体开发而成的,并具有11×11像素化读出方案。在此提出一种方法,以减少在高灵敏度计数应用中使用晶体所需的通道数量,该方法专用于PET和SPECT中的药物动力学建模。受经典共面阳极的启发,通过连接检测器的121个像素以形成插入带,实现了虚拟共面网格的实现。介绍了这种2通道阳极几何结构的布局,前端电子设备和检测器的特性。通过实验确定补偿CZT中电子俘获所需的系数以提高性能。所得的虚拟共面探测器在662 keV时具有34%的固有效率和8%的能量分辨率。检测器的响应在80 keV和1372 keV之间是线性的。这表明,对于某些应用,特别是在需要高灵敏度和紧凑性的应用中,大型CZT晶体提供了闪烁检测器的绝佳替代品。

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