Ter-Pogossian M M, Mullani N A, Ficke D C, Markham J, Snyder D L
J Comput Assist Tomogr. 1981 Apr;5(2):227-39. doi: 10.1097/00004728-198104000-00014.
In positron emission tomography (PET), the annihilation radiation is usually detected as a coincidence occurrence that localizes the position of the annihilation event to a straight line joining the detectors. The measure of the difference between the time of flight (TOF) of the annihilation photons between their inception and their detection permits the localization of the position of the annihilation event along the coincidence line. The incorporation of TOF information into the PET reconstruction process improves the signal-to-noise ratio in the image obtained. The utilization of scintillation detectors utilizing cesium fluoride scintillators, fast photomultiplier tubes, and fast timing circuits allows sub-nanosecond coincidence timing resolution needed for the effective use of TOF in PET. Mathematical considerations and pilot experiments show that with state-of-the-art electronic components and through the application of proper reconstruction algorithms, the combination of TOF and PET positional data improves severalfold the signal-to-noise ratio with respect to conventional PET image reconstruction at the cost of increasing the amount of data to be processed. The construction of a TOF-assisted PET device is within the capability of state-of-the-art technology.
在正电子发射断层扫描(PET)中,湮灭辐射通常被检测为一种符合事件,该事件将湮灭事件的位置定位到连接探测器的一条直线上。测量湮灭光子从产生到检测之间的飞行时间(TOF)差异,可使湮灭事件的位置沿符合线定位。将TOF信息纳入PET重建过程可提高所获图像的信噪比。使用氟化铯闪烁体、快速光电倍增管和快速定时电路的闪烁探测器,能够实现PET中有效利用TOF所需的亚纳秒级符合定时分辨率。数学考量和初步实验表明,利用最先进的电子元件并通过应用适当的重建算法,TOF与PET位置数据的结合相对于传统PET图像重建可将信噪比提高数倍,但代价是增加了要处理的数据量。构建一台TOF辅助的PET设备在现有技术能力范围内。