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System Design and Development of a Lower-Cost Animal PET-CT (MuPET) with Large Axial Solid PET Ring of 1.25-mm LYSO Detectors

机译:具有1.25mm Lyso探测器的大型轴向固体PET环的低成本动物PET-CT(MUPET)的系统设计与开发

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This paper presents the system design and engineering of a lower-cost, large axial field-of-view micro PET-CT (MuPET) for small animal imaging. The system has been constructed and being tested. 30,420 LYSO detectors (1.25 transaxial × 1.4 axial × 10 mm~3) form a 16.5-cm detector solid ring and a large 11.6-cm axial field for high detection sensitivity. The 30240 crystals are configured into 180 pentagon-shaped position-sensitive blocks and are precisely glued together into a solid crystal ring consisting 78 detector rings and 390 detectors per ring. Each block decodes 13 × 13 crystals using our PMT-Quadrant-Sharing (PQS) scheme and the entire solid detector ring with 30,420 crystals are decoded by only 210 round PMT (19-mm), with an average decoding ratio of 145 detectors/PMT. The 180 PQS detector blocks were produced by an efficient slab-sandwich-slice method with a 94% volumetric packing fraction and internal mirror film decoding light-guides for high light-yield. The high-resolution PQS block has an average energy-resolution of 14.1% ranged from 12.9% to 15.8%. The front-end FPGA based digital HYPER (High-Yield-Pileup-Event-Recovery) detector-decoding electronics can process 25 million random "singles"/sec with a 10% loss. The coincidence system has a capability of online programming of both prompt and delayed-coincidence windows between 0 to 16-ns with 95-ps resolution. The system coincidence-timing window is 1.9-ns. The Preliminary timing resolution is 650-ps, despite using non-time-of-flight PMT and very narrow crystals. The electronics has an online baseline-correction and automatic PMT-gain control using LED for stabilizing detector-decoding and a PID detector temperature controller using peltier cooler for minimizing the effect of room temperature variation. The CT section is a cone-beam CT using a flat panel detector with 43-micron pitch and 80KVp (0.5 mA) x-ray generator. The reconstructed Na-22 point Source image resolution using 2-D filtered back-projection is 1.35 mm and 1.9 mm at the center and 4.0 cm off center, respectively. With resolution-recovery reconstruction, resolution less than 1.2 mm can be achieved at the center and 1.35 mm at 4.0 cm off center. The preliminary result of absolute sensitivity was 5.0% for a point source at the center of the PET with a 300-750 keV window.
机译:本文介绍了用于小动物成像的低成本,大轴向视野微宠物CT(MUPET)的系统设计和工程。系统已经构建并进行了测试。 30,420 Lyso探测器(1.25横轴×1.4轴向×10mm〜3)形成16.5cm检测器固体环和一个大的11.6cm轴向区域,用于高检测灵敏度。 30240晶体构造成180五角形位置敏感块,并精确地将固体晶环粘在一起,该固体晶环包括78个检测器环和每个环的390检测器。使用我们的PMT - 象限共享(PQS)方案的每个块解码13×13晶体,并且通过30,420晶体的整个固体检测器环由仅210圆PMT(19毫米)进行解码,平均解码比为145检测器/ PMT 。通过高效的平板夹层切片方法生产180PPQS检测器块,其具有94%的体积填充级分和内部镜膜解码光导,用于高光源。高分辨率PQS块的平均能量分辨率为14.1%,范围为12.9%至15.8%。基于前端FPGA的数字超级超(高收益堆 - 事件恢复)检测器解码电子器件可以处理2500万随机的“单打”/秒,损失10%。巧合系统具有在0到16-NS之间的提示和延迟旋转窗口的在线编程的能力,具有95-PS分辨率。系统巧合 - 时序窗口为1.9-ns。尽管使用非飞行时间的PMT和非常窄的晶体,但初步时序分辨率为650-PS。电子器件具有使用LED的在线基线 - 校正和自动PMT增益控制,用于使用Peltier Cooler稳定检测器解码和PID检测器温度控制器,以使室温变化的效果最小化。 CT部分是使用具有43微米间距和80kVP(0.5MA)X射线发生器的平板检测器的锥形梁CT。使用2-D滤波后投影的重建的NA-22点源图像分辨率分别在中心和4.0厘米的中心处为1.35 mm和1.9mm。通过分辨率恢复重建,可以在中心处达到小于1.2毫米的分辨率,1.35毫米处于4.0厘米的中心。具有300-750 kev窗口的宠物中心的点源的绝对灵敏度的初步结果为5.0%。

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