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A depth-of-interaction PET detector using mutual gain-equalized silicon photomultiplier

机译:使用相互增益均衡的硅光电倍增器进行相互作用的宠物检测器

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We developed a prototype high resolution, high efficiency depth-encoding detector for PET applications based on dual-ended readout of LYSO array with two silicon photomultipliers (SiPMs). Flood images, energy resolution, and depth-of-interaction (DOI) resolution were measured for a LYSO array - 0.7 mm in crystal pitch and 10 mm in thickness - with four unpolished parallel sides. Flood images were obtained such that individual crystal element in the array is resolved. The energy resolution of the entire array was measured to be 33%, while individual crystal pixel elements utilizing the signal from both sides ranged from 23.3% to 27%. By applying a mutual-gain equalization method, a DOI resolution of 2 mm for the crystal array was obtained in the experiments while simulations indicate ∼1 mm DOI resolution could possibly be achieved. The experimental DOI resolution can be further improved by obtaining revised detector supporting electronics with better energy resolutions. This study provides a detailed detector calibration and DOI response characterization of the dual-ended readout SiPM-based PET detectors, which will be important in the design and calibration of a PET scanner in the future.
机译:我们开发了一种基于Lyso阵列的双端读数的PET应用的原型高分辨率,高效率深度编码探测器,具有两个硅光学倍增器(SIPMS)。洪水图像,能量分辨率和相互作用(DOI)分辨率被测量为Lyso阵列 - 0.7mm在晶间距和10mm的厚度中 - 有四个未抛光的平行侧。获得洪水图像使得阵列中的各个晶体元件被解析。测量整个阵列的能量分辨率为33%,而利用来自两侧信号的单个晶体像素元件的范围为23.3%至27%。通过施加相互增益均衡方法,在实验中获得了用于晶体阵列的2mm的DOI分辨率,而模拟表明可以实现~1mm DOI分辨率。通过获得具有更好能量分辨率的经修复的检测器支持电子器件,可以进一步提高实验DOI分辨率。本研究提供了一种详细的探测器校准和DOI响应表征的基于双端读出SIPM的PET探测器,这在未来PET扫描仪的设计和校准中将是重要的。

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