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核医学仪器的最新进展与未来趋势。

Recent developments and future trends in nuclear medicine instrumentation.

作者信息

Zaidi Habib

机构信息

Division of Nuclear Medicine, Geneva University Hospital, CH-1211 Geneva 4, Switzerland.

出版信息

Z Med Phys. 2006;16(1):5-17. doi: 10.1078/0939-3889-00288.

Abstract

Molecular imaging using high-resolution single-photon emission computed tomography (SPECT) and positron emission tomography (PET) has advanced elegantly and has steadily gained importance in the clinical and research arenas. Continuous efforts to integrate recent research findings for the design of different geometries and various detector technologies of SPECT and PET cameras have become the goal of both the academic comcameras have become the goal of both the academic community and nuclear medicine industry. As PET has recently become of more interest for clinical practice, several different design trends seem to have developed. Systems are being designed for "low cost" clinical applications, very high-resolution research applications (including small-animal imaging), and just about everywhere in-between. The development of dual-modality imaging systems has revolutionized the practice of nuclear medicine. The major advantage being that SPECT/PET data are intrinsically aligned to anatomical information from the X-ray computed tomography (CT), without the use of external markers or internal landmarks. On the other hand, combining PET with Magnetic Resonance Imaging (MRI) technology is scientifically more challenging owing to the strong magnetic fields. Nevertheless, significant progress has been made resulting in the design of a prototype small animal PET scanner coupled to three multichannel photomultipliers via optical fibers, so that the PET detector can be operated within a conventional MR system. Thus, many different design paths are being pursued--which ones are likely to be the main stream of future commercial systems? It will be interesting, indeed, to see which technologies become the most popular in the future. This paper briefly summarizes state-of-the art developments in nuclear medicine instrumentation. Future prospects will also be discussed.

摘要

使用高分辨率单光子发射计算机断层扫描(SPECT)和正电子发射断层扫描(PET)的分子成像技术已经取得了显著进展,并在临床和研究领域的重要性日益凸显。持续努力整合最新研究成果,以设计不同几何形状和各种探测器技术的SPECT和PET相机,已成为学术界和核医学行业的共同目标。由于PET最近在临床实践中更受关注,似乎已经出现了几种不同的设计趋势。正在设计用于“低成本”临床应用、超高分辨率研究应用(包括小动物成像)以及介于两者之间的各种应用的系统。双模态成像系统的发展彻底改变了核医学的实践。其主要优点是SPECT/PET数据与来自X射线计算机断层扫描(CT)的解剖信息本质上是对齐的,无需使用外部标记或内部标志物。另一方面,将PET与磁共振成像(MRI)技术相结合在科学上更具挑战性,因为存在强磁场。尽管如此,还是取得了重大进展,设计出了一种通过光纤与三个多通道光电倍增管耦合的小型动物PET扫描仪原型,使得PET探测器能够在传统MR系统内运行。因此,正在探索许多不同的设计路径——哪些可能会成为未来商业系统的主流呢?的确,看看哪些技术在未来最受欢迎将会很有趣。本文简要总结了核医学仪器的最新发展情况。还将讨论未来的前景。

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