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利用激光诱导光学势垒对闪烁体中的光传播进行调控

Light Spread Manipulation in Scintillators Using Laser Induced Optical Barriers.

作者信息

Bläckberg Lisa, Moebius Michael, Fakhri Georges El, Mazur Eric, Sabet Hamid

机构信息

Dept. of Radiolgy at Massachusetts General Hospital and Harvard Medical School, Boston, USA, and Dept. of Physics and Astronomy, Uppsala University, Sweden (

School of Engineering and Applied Sciences, Harvard University. He is now with The Charles Stark Draper Laboratory.

出版信息

IEEE Trans Nucl Sci. 2018 Aug;65(8):2208-2215. doi: 10.1109/TNS.2018.2809570. Epub 2018 Feb 27.

Abstract

We are using the Laser Induced Optical Barriers (LIOB) technique to fabricate scintillator detectors with combined performance characteristics of the two standard detector types, mechanically pixelated arrays and monolithic crystals. This is done by incorporation of so-called optical barriers that have a refractive index lower than that of the crystal bulk. Such barriers can redirect the scintillation light and allow for control of the light spread in the detector. Previous work has shown that the LIOB technique has the potential to achieve detectors with high transversal and depth of interaction (DOI) resolution simultaneously in a single-side readout configuration, suitable for high resolution PET imaging. However, all designs studied thus far present edge effect issues similarly as in the standard detector categories. In this work we take advantage of the inherent flexibility of the LIOB technique and investigate alternative barrier patterns with the aim to address this problem. Light transport simulations of barrier patterns in LYSO:Ce, with deeper barrier walls moving towards the detector edge show great promise in reducing the edge effect, however there is a trade-off in terms of achievable DOI information. Furthermore, fabrication and characterization of a 20 mm thick LYSO:Ce detector with optical barriers forming a pattern of 1 × 1 × 20mm pixel like structures show that light channeling in laser-processed detectors in agreement with optical barriers with refractive index between 1.2 and 1.4 is achievable.

摘要

我们正在使用激光诱导光学屏障(LIOB)技术来制造闪烁体探测器,该探测器具有两种标准探测器类型(机械像素化阵列和整块晶体)的综合性能特征。这是通过引入所谓的光学屏障来实现的,这些屏障的折射率低于晶体本体的折射率。这种屏障可以使闪烁光重新定向,并控制探测器中的光传播。先前的工作表明,LIOB技术有潜力在适合高分辨率正电子发射断层扫描(PET)成像的单侧读出配置中,同时实现具有高横向和相互作用深度(DOI)分辨率的探测器。然而,迄今为止所研究的所有设计都同样存在与标准探测器类别中类似的边缘效应问题。在这项工作中,我们利用LIOB技术固有的灵活性,研究替代的屏障图案,旨在解决这个问题。对LYSO:Ce中屏障图案的光传输模拟表明,更深的屏障壁朝着探测器边缘移动在减少边缘效应方面很有前景,然而在可实现的DOI信息方面存在权衡。此外,对一个20毫米厚的LYSO:Ce探测器进行制造和表征,该探测器具有形成1×1×20毫米像素状结构图案的光学屏障,结果表明在激光加工的探测器中实现与折射率在1.2和1.4之间的光学屏障一致的光通道是可行的。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/6824/6424510/04fc00a89147/nihms-1504367-f0001.jpg

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