中文

基于多焦道MCP-PMT带碰尔斯辐射集成窗的PET成像首个实验验证

仪器与探测器 2025-10-15 v2

摘要

提高时-of-flight正电外显剂学术PET系统的 coincidence time resolution(CTR)以实现更高的信噪比(SNR)增益甚至直接正电外显成像(dPEI),对于PET成像的许多先进临床应用至关重要。这对PET系统的所有时序性能提出更高要求。一种有效方法是使用微通道板光子多极管(MCP-PMT)进行 prompt 碰尔斯光子检测。本研究开发了一个双模块碰尔斯PET成像实验平台,采用我们专有的 8×8 焦道MCP-PMT带碰尔斯辐射集成窗,结合定制的多通道电子器件,并为该平台设计了特定的校准和校正方法。在该平台上实现了 103 ps FWHM 的 CTR。我们克服了单焦道探测器在以前实验中的限制,显著提升了成像效率,首次实现了模块级碰尔斯PET成像。 conducted 包括放射性源和各种形状类型模拟体的成像实验,初步验证了该成像方法的可行性和优势。此外,分析和验证了正规化校正以及伽马射线与 MCP 之间相互作用概率对图像和实验结果的影响。

关键词

引用

@article{arxiv.2502.07195,
  title  = {First experimental proof of PET imaging based on multi-anode MCP-PMTs with Cherenkov radiator-integrated window},
  author = {Weiyan Pan and Lingyue Chen and Guorui Huang and Jun Hu and Wei Hou and Xianchao Huang and Xiaorou Han and Xiaoshan Jiang and Zhen Jin and Daowu Li and Jingwen Li and Shulin Liu and Zehong Liang and Lishuang Ma and Zhe Ning and Sen Qian and Ling Ren and Jianning Sun and Shuguang Si and Yunhua Sun and Long Wei and Ning Wang and Qing Wei and Qi Wu and Tianyi Wang and Xin Wang and Xingchao Wang and Yangfu Wang and Yifang Wang and Yingjie Wang and Zhi Wang and Hang Yuan and Jingbo Ye and Xiongbo Yan and Meiling Zhu and Zhiming Zhang},
  journal= {arXiv preprint arXiv:2502.07195},
  year   = {2025}
}

备注

12 pages, 12 figures, manuscript has been submitted to Physics in Medicine & Biology and is under review