Llosá Gabriela, Rafecas Magdalena
Instituto de Física Corpuscular (IFIC), CSIC-UV, Catedrático Beltrán, 2., 46980 Paterna, Valencia, Spain.
Institute of Medical Engineering (IMT), Universität zu Lübeck, Ratzeburger Allee 160, 23562 Lübeck, Germany.
Eur Phys J Plus. 2023;138(3):214. doi: 10.1140/epjp/s13360-023-03805-9. Epub 2023 Mar 7.
Compton cameras can offer advantages over gamma cameras for some applications, since they are well suited for multitracer imaging and for imaging high-energy radiotracers, such as those employed in radionuclide therapy. While in conventional clinical settings state-of-the-art Compton cameras cannot compete with well-established methods such as PET and SPECT, there are specific scenarios in which they can constitute an advantageous alternative. The combination of PET and Compton imaging can benefit from the improved resolution and sensitivity of current PET technology and, at the same time, overcome PET limitations in the use of multiple radiotracers. Such a system can provide simultaneous assessment of different radiotracers under identical conditions and reduce errors associated with physical factors that can change between acquisitions. Advances are being made both in instrumentation developments combining PET and Compton cameras for multimodal or three-gamma imaging systems, and in image reconstruction, addressing the challenges imposed by the combination of the two modalities or the new techniques. This review article summarizes the advances made in Compton cameras for medical imaging and their combination with PET.
对于某些应用而言,康普顿相机相较于伽马相机具有优势,因为它们非常适合多示踪剂成像以及对高能放射性示踪剂(例如用于放射性核素治疗的那些示踪剂)进行成像。虽然在传统临床环境中,最先进的康普顿相机无法与正电子发射断层扫描(PET)和单光子发射计算机断层扫描(SPECT)等成熟方法竞争,但在某些特定情况下,它们可以成为一种有利的替代方案。PET与康普顿成像相结合,可受益于当前PET技术提高的分辨率和灵敏度,同时克服PET在使用多种放射性示踪剂方面的局限性。这样的系统可以在相同条件下对不同的放射性示踪剂进行同步评估,并减少与采集之间可能发生变化的物理因素相关的误差。在将PET和康普顿相机结合用于多模态或三伽马成像系统的仪器开发以及图像重建方面都取得了进展,以应对两种模态结合或新技术带来的挑战。这篇综述文章总结了用于医学成像的康普顿相机及其与PET结合方面所取得的进展。