Kuikka J T, Britton K E, Chengazi V U, Savolainen S
Department of Clinical Physiology, Kuopio University Hospital, Finland.
Nucl Med Commun. 1998 Jan;19(1):3-12. doi: 10.1097/00006231-199801000-00003.
This review article forecasts developments in nuclear medicine instrumentation which are on the horizon. Special attention is paid to the physical properties of detectors and multiple-processor parallel processing systems needed for fast and high-quality imaging in emission tomography. Advances in detector technology will improve imaging resolution below 5 mm and will increase sensitivity and quantitative accuracy. In addition, high count rate list-mode acquisition enables 'true' four-dimensional data-sets. A sandwich-like construction of two different crystals allows the simultaneous use of conventional tracers and positron tracers (multiple emission tomography, MET). Transmission-based attenuation and scatter compensation with fast iterative reconstruction methods will further improve image quality. The clinical and scientific importance of improved images and the limits on advances in instrumentation are also reviewed.
这篇综述文章预测了核医学仪器即将出现的发展。特别关注了发射断层扫描中快速高质量成像所需的探测器和多处理器并行处理系统的物理特性。探测器技术的进步将提高低于5毫米的成像分辨率,并提高灵敏度和定量准确性。此外,高计数率列表模式采集可实现“真正的”四维数据集。两种不同晶体的三明治式结构允许同时使用传统示踪剂和正电子示踪剂(多重发射断层扫描,MET)。基于传输的衰减和散射补偿以及快速迭代重建方法将进一步提高图像质量。还综述了图像改善的临床和科学重要性以及仪器发展的局限性。