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首页> 外文期刊>Physics in medicine and biology. >Optimized light sharing for high-resolution TOF PET detector based on digital silicon photomultipliers
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Optimized light sharing for high-resolution TOF PET detector based on digital silicon photomultipliers

机译:基于数字硅光电倍增管的高分辨率TOF PET检测器的优化光共享

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摘要

The majority of current whole-body PET scanners are based on pixelated scintillator arrays with a transverse pixel size of 4 mm. However, recent studies have shown that decreasing the pixel size to 2 mm can significantly improve image spatial resolution. In this study, the performance of Digital Photon Counter (DPC) from Philips Digital Photon Counting (PDPC) was evaluated to determine their potential for high-resolution whole-body time of flight (TOF) PET scanners. Two detector configurations were evaluated. First, the DPC3200-44-22 DPC array was coupled to a LYSO block of 15 x 15 2 x 2 x 22 mm(3) pixels through a 1 mm thick light guide. Due to light sharing among the dies neighbour logic of the DPC was used. In a second setup the same DPC was coupled directly to a scalable 4 x 4 LYSO matrix of 1.9 x 1.9 x 22 mm(3) crystals with a dedicated reflector arrangement allowing for controlled light sharing patterns inside the matrix. With the first approach an average energy resolution of 14.5% and an average CRT of 376 ps were achieved. For the second configuration an average energy resolution of 11% and an average CRT of 295 ps were achieved. Our studies show that the DPC is a suitable photosensor for a high-resolution TOF-PET detector. The dedicated reflector arrangement allows one to achieve better performances than the light guide approach. The count loss, caused by dark counts, is overcome by fitting the matrix size to the size of DPC single die.
机译:当前大多数的全身PET扫描仪都是基于像素化闪烁体阵列,其横向像素尺寸为4 mm。但是,最近的研究表明,将像素大小减小到2 mm可以显着提高图像空间分辨率。在这项研究中,对飞利浦数字光子计数(PDPC)的数字光子计数器(DPC)的性能进行了评估,以确定其在高分辨率全身飞行时间(TOF)PET扫描仪中的潜力。评价了两种检测器配置。首先,DPC3200-44-22 DPC阵列通过1 mm厚的光导与15 x 15 2 x 2 x 22 mm(3)像素的LYSO块耦合。由于管芯之间的光共享,因此使用了DPC的相邻逻辑。在第二种设置中,同一DPC通过专用的反射器布置直接耦合到1.9 x 1.9 x 22 mm(3)晶体的可伸缩4 x 4 LYSO矩阵,允许在矩阵内部进行受控的光共享模式。采用第一种方法时,平均能量分辨率为14.5%,平均CRT为376 ps。对于第二种配置,平均能量分辨率为11%,平均CRT为295 ps。我们的研究表明,DPC是适用于高分辨率TOF-PET检测器的光电传感器。专用的反射器装置使人可以获得比光导方法更好的性能。通过使矩阵尺寸适合DPC单芯片的尺寸,可以克服由暗计数引起的计数损失。

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