Won Jun Yeon, Park Haewook, Lee Seungeun, Son Jeong-Whan, Chung Yina, Ko Guen Bae, Kim Kyeong Yun, Song Junghyun, Seo Seongho, Ryu Yeunchul, Chung Jun-Young, Lee Jae Sung
IEEE Trans Med Imaging. 2021 Jun;40(6):1579-1590. doi: 10.1109/TMI.2021.3062066. Epub 2021 Jun 1.
In study, we developed a positron emission tomography (PET) insert for simultaneous brain imaging within 7-Tesla (7T) magnetic resonance (MR) imaging scanners. The PET insert has 18 sectors, and each sector is assembled with two-layer depth-of-interaction (DOI)-capable high-resolution block detectors. The PET scanner features a 16.7-cm-long axial field-of-view (FOV) to provide entire human brain images without bed movement. The PET scanner early digitizes a large number of block detector signals at a front-end data acquisition (DAQ) board using a novel field-programmable gate array (FPGA)-only signal digitization method. All the digitized PET data from the front-end DAQ boards are transferred using gigabit transceivers via non-magnetic high-definition multimedia interface (HDMI) cables. A back-end DAQ system provides a common clock and synchronization signal for FPGAs over the HDMI cables. An active cooling system using copper heat pipes is applied for thermal regulation. All the 2.17-mm-pitch crystals with two-layer DOI information were clearly identified in the block detectors, exhibiting a system-level energy resolution of 12.6%. The PET scanner yielded clear hot-rod and Hoffman brain phantom images and demonstrated 3D PET imaging capability without bed movement. We also performed a pilot simultaneous PET/MR imaging study of a brain phantom. The PET scanner achieved a spatial resolution of 2.5 mm at the center FOV (NU 4) and a sensitivity of 18.9 kcps/MBq (NU 2) and 6.19% (NU 4) in accordance with the National Electrical Manufacturers Association (NEMA) standards.
在本研究中,我们开发了一种正电子发射断层扫描(PET)插入件,用于在7特斯拉(7T)磁共振(MR)成像扫描仪内同时进行脑成像。该PET插入件有18个扇区,每个扇区由两层具备深度交互(DOI)功能的高分辨率块状探测器组装而成。PET扫描仪的轴向视野(FOV)长16.7厘米,无需床移动即可提供完整的人脑图像。PET扫描仪使用一种仅基于现场可编程门阵列(FPGA)的新型信号数字化方法,在前端数据采集(DAQ)板上对大量块状探测器信号进行早期数字化。来自前端DAQ板的所有数字化PET数据通过千兆收发器经由非磁性高清多媒体接口(HDMI)电缆传输。后端DAQ系统通过HDMI电缆为FPGA提供公共时钟和同步信号。采用了一种使用铜热管的主动冷却系统进行热调节。在块状探测器中可以清晰识别出所有具有两层DOI信息、间距为2.17毫米的晶体,系统级能量分辨率为12.6%。该PET扫描仪生成了清晰的热棒和霍夫曼脑模体图像,并展示了无需床移动的三维PET成像能力。我们还对一个脑模体进行了PET/MR同步成像的初步研究。根据美国国家电气制造商协会(NEMA)标准,该PET扫描仪在中心视野(NU 4)处的空间分辨率为2.5毫米,灵敏度为18.9 kcps/MBq(NU 2)和6.19%(NU 4)。