New Directions for dMiCE - a Depth-of-Interaction Detector Design for PET Scanners.

T K Lewellen, L R Macdonald, R S Miyaoka, W McDougald, K Champley
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引用次数: 15

Abstract

Our laboratory has been developing a depth-of- interaction (DOI) detector design based on light sharing between pairs or quadlets of crystals. Work to date has been utilizing 2 times 2 mm cross section crystals carefully positioned on a multi-anode PMT. However, there is still significant light sharing in the PMT glass envelope and current PMT designs do not allow one-on-one coupling for arrays of smaller cross section crystals. One-on-one coupling is optimal for implementing the DOI estimator. An alternative to PMTs is to take advantage of progress in fabrication of metal resistive-layer semiconductor photodetectors to provide arrays with one-on-one crystal coupling. We report on our initial tests of one manufacturer's devices. The photodetector (MAPD) and scintillator combination (LFS-3) are both products of Zecotek. The LFS-3 crystal is a variant of LFS that has a better spectral match to the MAPD. Measurements show performance equivalent to or better than that obtained with PMTs and LSO, LFS, or LYSO crystals. For example, 2 times 2 times 20 mm crystals are providing 11% energy resolution. The high gain of such devices allow flexibility in designs for both the array and the supporting electronics. We are proceeding with the dMiCE development based on the use of MAPD and LFS-3 arrays.
dMiCE的新方向——用于PET扫描仪的深度交互检测器设计。
我们的实验室一直在开发一种基于晶体对或四联体之间的光共享的相互作用深度(DOI)探测器设计。迄今为止的工作是利用2×2毫米横截面晶体仔细定位在多阳极PMT上。然而,在PMT玻璃包膜中仍然存在显著的光共享,并且目前的PMT设计不允许较小截面晶体阵列的一对一耦合。一对一耦合对于实现DOI估计器是最理想的。pmt的替代方案是利用金属电阻层半导体光电探测器的制造进展来提供一对一晶体耦合阵列。我们报告的是对一家制造商设备的初步测试。光电探测器(MAPD)和闪烁体组合(LFS-3)都是泽科科技的产品。LFS-3晶体是LFS的一种变体,与MAPD具有更好的光谱匹配。测量结果表明,pmt和LSO、LFS或LYSO晶体的性能相当或更好。例如,2×2×20毫米晶体提供11%的能量分辨率。这种器件的高增益使得阵列和支持电子器件的设计具有灵活性。我们正在进行基于MAPD和LFS-3阵列的dMiCE开发。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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