Kwon Sun Il, Ferri Alessandro, Gola Alberto, Berg Eric, Piemonte Claudio, Cherry Simon R, Roncali Emilie
University of California Davis , Department of Biomedical Engineering, Davis, California 95616, United States.
Fondazione Bruno Kessler , via Sommarive 18, Trento, Italy.
J Med Imaging (Bellingham). 2016 Oct;3(4):043501. doi: 10.1117/1.JMI.3.4.043501. Epub 2016 Nov 23.
Current research in the field of positron emission tomography (PET) focuses on improving the sensitivity of the scanner with thicker detectors, extended axial field-of-view, and time-of-flight (TOF) capability. These create the need for depth-of-interaction (DOI) encoding to correct parallax errors. We have proposed a method to encode DOI using phosphor-coated crystals. Our initial work using photomultiplier tubes (PMTs) demonstrated the possibilities of the proposed method, however, a major limitation of PMTs for this application is poor quantum efficiency in yellow light, corresponding to the wavelengths of the converted light by the phosphor coating. In contrast, the red-green-blue-high-density (RGB-HD) silicon photomultipliers (SiPMs) have a high photon detection efficiency across the visible spectrum. Excellent coincidence resolving time (CRT; [Formula: see text]) was obtained by coupling RGB-HD SiPMs and [Formula: see text] lutetium fine silicate crystals coated on a third of one of their lateral sides. Events were classified in three DOI bins ([Formula: see text] width) with an average sensitivity of 83.1%. A CRT of [Formula: see text] combined with robust DOI encoding is a marked improvement in the phosphor-coated approach that we pioneered. For the first time, we read out these crystals with SiPMs and clearly demonstrated the potential of the RGB-HD SiPMs for this TOF-DOI PET detector.
正电子发射断层扫描(PET)领域的当前研究集中在利用更厚的探测器、扩展轴向视野和飞行时间(TOF)能力来提高扫描仪的灵敏度。这些需求催生了相互作用深度(DOI)编码,以校正视差误差。我们提出了一种使用涂有磷光体的晶体进行DOI编码的方法。我们最初使用光电倍增管(PMT)的工作证明了该方法的可行性,然而,PMT在该应用中的一个主要限制是在黄光下量子效率较低,而黄光对应于磷光体涂层转换光的波长。相比之下,红绿蓝高密度(RGB-HD)硅光电倍增管(SiPM)在整个可见光谱范围内具有较高的光子探测效率。通过将RGB-HD SiPM与在其一个侧面的三分之一上涂覆的硅酸镥晶体耦合,获得了出色的符合分辨时间(CRT;[公式:见正文])。事件被分类到三个DOI区间([公式:见正文]宽度),平均灵敏度为83.1%。[公式:见正文]的CRT与强大的DOI编码相结合,是我们率先提出的涂有磷光体方法的显著改进。我们首次使用SiPM读出这些晶体,并清楚地证明了RGB-HD SiPM在这种TOF-DOI PET探测器中的潜力。