Ter-Pogossian M M
Semin Nucl Med. 1981 Jan;11(1):13-23. doi: 10.1016/s0001-2998(81)80049-9.
The possibility of utilizing the PET approach to the investigation of dynamic physiologic processes has not been limited so far by radiation exposure to the patient but rather considerations by the technical limitations of PET imaging devices. In the past few years, several PET designs have been optimized specifically for fast dynamic studies. The most recent of these designs incorporates cesium fluoride detectors to achieve high counting rate capabilities. At this time, the value of fast dynamic studies with PET can be only theorized but expectations for the modality rest on solid physiologic hypotheses. The incorporation of time-of-flight information into the PET reconstruction process promises to further enhance the capabilities of fast PET devices by the improvement of temporal resolution through signal-to-noise ratio increase. PET devices incorporating time-of-flight information are beyond the drawing board stage and are now under construction.
到目前为止,利用正电子发射断层扫描(PET)方法研究动态生理过程的可能性并非受限于患者所接受的辐射剂量,而是受限于PET成像设备的技术局限性。在过去几年中,已有几种PET设计专门针对快速动态研究进行了优化。其中最新的设计采用了氟化铯探测器,以实现高计数率能力。目前,PET快速动态研究的价值只能从理论上推测,但对这种方式的期望基于可靠的生理假设。将飞行时间信息纳入PET重建过程有望通过提高信噪比来改善时间分辨率,从而进一步增强快速PET设备的能力。包含飞行时间信息的PET设备已超越设计阶段,正在建造之中。