Kang Han Gyu, Tashima Hideaki, Wakizaka Hidekatsu, Akamatsu Go, Iwao Yuma, Toramatsu Chie, Yamaya Taiga
Department of Advanced Nuclear Science, National Institutes for Quantum Science and Technology (QST), 4-9-1, Anagawa, Inage-ku, Chiba, Japan.
Phys Med Biol. 2025 Jun 19;70(12). doi: 10.1088/1361-6560/ade112.
Dynamic positron emission tomography (PET) imaging is important for preclinical research since it can visualize the functional information of rodent models as a function of time. However, the temporal resolution of small animal PET imaging has been limited to a scale of seconds due to low sensitivity, and it is not sufficient to capture cardiac or brain function accurately. Here, we present an ultrasensitive small-animal PET scanner with total-body coverage for sub-second dynamic imaging of a rat.The ultrasensitive small animal PET scanner has a 155 mm inner diameter and 325.6 mm axial coverage. The PET scanner has six rings, each of which has 10 depth-of-interaction (DOI) detectors. Each DOI detector consists of a four-layer Zr-doped gadolinium oxyorthosilicate crystal array (2.85 mm pitch, 30 mm total thickness) and 8 × 8 multi-anode photomultiplier tubes. The physical PET performance was evaluated based on the National Electrical Manufacturers Association NU4 protocol. Sub-second dynamic rat imaging was performed withF-FDG tracer.The peak absolute sensitivity was 20.2% and spatial resolution was 2.6 mm at the center of the field of view with an energy window of 400-600 keV. Total-body images of a rat were obtained with a single bed position. The cardiac function of a rat was visualized with 0.25 s temporal resolution, which was hardly possible with conventional small animal PET scanners.. The developed ultrasensitive animal PET enabled sub-second dynamic PET imaging in rodent models with total-body coverage. In conclusion, the ultrasensitive small animal PET scanner can serve as a useful molecular imaging tool for preclinical research with its long axial coverage sub-second temporal resolution.
动态正电子发射断层扫描(PET)成像对于临床前研究非常重要,因为它可以将啮齿动物模型的功能信息可视化为时间的函数。然而,由于灵敏度较低,小动物PET成像的时间分辨率一直限制在秒级,不足以准确捕捉心脏或大脑功能。在此,我们展示了一种具有全身覆盖功能的超灵敏小动物PET扫描仪,用于对大鼠进行亚秒级动态成像。
这种超灵敏小动物PET扫描仪的内径为155毫米,轴向覆盖范围为325.6毫米。该PET扫描仪有六个环,每个环有10个相互作用深度(DOI)探测器。每个DOI探测器由一个四层掺锆正硅酸钆晶体阵列(间距2.85毫米,总厚度30毫米)和8×8多阳极光电倍增管组成。基于美国国家电气制造商协会NU4协议对PET的物理性能进行了评估。使用F-FDG示踪剂进行了亚秒级动态大鼠成像。在能量窗口为400-600 keV时,视野中心的峰值绝对灵敏度为20.2%,空间分辨率为2.6毫米。在单个床位位置获得了大鼠的全身图像。以0.25秒的时间分辨率可视化了大鼠的心脏功能,这对于传统小动物PET扫描仪来说几乎是不可能的。所开发的超灵敏动物PET能够在具有全身覆盖的啮齿动物模型中进行亚秒级动态PET成像。总之,这种超灵敏小动物PET扫描仪凭借其长轴向覆盖范围和亚秒级时间分辨率,可作为临床前研究的有用分子成像工具。