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首页> 外文期刊>Nuclear Science, IEEE Transactions on >Studying Spatial Resolution of CZT Detectors Using Sub-Pixel Positioning for SPECT
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Studying Spatial Resolution of CZT Detectors Using Sub-Pixel Positioning for SPECT

机译:使用亚像素定位SPECT研究CZT检测器的空间分辨率

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摘要

CZT detectors are the basic building block of a variety of new SPECT systems. Their modularity allows adapting system architecture to specific applications such as cardiac, breast, brain or small animal imaging. In semiconductors, a high number of electron-hole pairs is produced by a single interaction. This direct conversion process allows better energy and spatial resolutions than usual scintillation detectors based on NaI(Tl). However, it remains often unclear if SPECT imaging can really benefit of that performance gain. We investigate the system performance of a detection module, which is based on 5 mm thick CZT with a segmented anode having a 2.5 mm pitch by simulation and experimentation. This pitch allows an easy assembly of the crystal on the readout board and limits the space occupied by electronics without significantly degrading energy and spatial resolution.
机译:CZT检测器是各种新型SPECT系统的基本组成部分。它们的模块化特性使系统架构可以适应特定应用,例如心脏,乳房,大脑或小型动物成像。在半导体中,单次相互作用会产生大量的电子-空穴对。与基于NaI(Tl)的常规闪烁探测器相比,这种直接转换过程可提供更好的能量和空间分辨率。但是,通常仍然不清楚SPECT成像是否真的可以从这种性能提升中受益。我们通过仿真和实验研究了基于5毫米厚CZT和节距为2.5毫米节段阳极的检测模块的系统性能。这种间距使晶体易于在读数板上组装,并限制了电子设备所占用的空间,而不会显着降低能量和空间分辨率。

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