Kuang Zhonghua, Wang Xiaohui, Li Cheng, Deng Xinhan, Feng Kai, Hu Zhanli, Fu Xin, Ren Ning, Zhang Xianming, Zheng Yunfei, Liang Dong, Liu Xin, Zheng Hairong, Yang Yongfeng
Phys Med Biol. 2017 Jul 6;62(15):5945-5958. doi: 10.1088/1361-6560/aa71f3.
Small animal positron emission tomography (PET) is a well-established imaging modality in preclinical biomedical research. The performance of current small animal PET scanners is mainly limited by the detector performance and depth-encoding detectors are required to simultaneously achieve high spatial resolution and high sensitivity. In this work, the performance of a high-resolution dual-ended readout lutetium-yttrium oxyorthosilicate (LYSO) array using barium sulfate powder (BaSO) as the inter-crystal reflector was measured for the first time and compared to that of a LYSO array using the most commonly used enhanced specular reflector (ESR). Both LYSO arrays have 18 × 18 crystals and the crystal size is about 0.62 × 0.62 × 20 mm. The LYSO arrays are readout by two position-sensitive photomultiplier tubes (PSPMTs) from both ends. The flood histograms, energy resolution, depth of interaction (DOI) resolution and timing resolution were measured. The flood histograms of the LYSO array with BaSO reflector is much better than that of the LYSO array with ESR reflector. For the BaSO array, all crystals can be clearly resolved. For the ESR array, all crystals in one direction can be clearly resolved, but the edge 2-3 columns of the crystals in the other direction cannot be resolved. The average energy resolution of the BaSO and ESR arrays are 15.2% and 15.3%, respectively. The average DOI resolution of the BaSO array is 2.19 mm, which is 24% worse than the 1.76 mm DOI resolution of the ESR array. The timing resolution of both arrays is ~1.6 ns. The LYSO array with the new BaSO reflector provided an much better flood histogram in a high resolution dual-ended readout PET detectors as compared to the ESR array, and will be used to develop a small animal PET scanner that can simultaneously achieve uniform high spatial resolution, high sensitivity and low cost.
小动物正电子发射断层扫描(PET)是临床前生物医学研究中一种成熟的成像方式。当前小动物PET扫描仪的性能主要受探测器性能限制,需要深度编码探测器来同时实现高空间分辨率和高灵敏度。在这项工作中,首次测量了使用硫酸钡粉末(BaSO)作为晶体间反射器的高分辨率双端读出正硅酸镥钇(LYSO)阵列的性能,并与使用最常用的增强镜面反射器(ESR)的LYSO阵列进行了比较。两个LYSO阵列均有18×18个晶体,晶体尺寸约为0.62×0.62×20 mm。LYSO阵列由两端的两个位置灵敏光电倍增管(PSPMT)读出。测量了泛洪直方图、能量分辨率、相互作用深度(DOI)分辨率和时间分辨率。使用BaSO反射器的LYSO阵列的泛洪直方图比使用ESR反射器的LYSO阵列的泛洪直方图好得多。对于BaSO阵列,所有晶体都能清晰分辨。对于ESR阵列,一个方向上的所有晶体都能清晰分辨,但另一个方向上晶体边缘的2 - 3列无法分辨。BaSO和ESR阵列的平均能量分辨率分别为15.2%和15.3%。BaSO阵列的平均DOI分辨率为2.19 mm,比ESR阵列1.76 mm的DOI分辨率差24%。两个阵列的时间分辨率均约为1.6 ns。与ESR阵列相比,带有新型BaSO反射器的LYSO阵列在高分辨率双端读出PET探测器中提供了更好的泛洪直方图,并将用于开发一种能够同时实现均匀高空间分辨率、高灵敏度和低成本的小动物PET扫描仪。