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长轴向视野 PET/CT:核医学革命性发展的观点和综述——基于 7000 多例患者的临床经验。

Long-axial field-of-view PET/CT: perspectives and review of a revolutionary development in nuclear medicine based on clinical experience in over 7000 patients.

机构信息

Department of Nuclear Medicine, Inselspital, Bern University Hospital, University of Bern, Freiburgstr. 18, 3010, Bern, Switzerland.

Advanced Clinical Imaging Technology, Siemens Healthcare AG, Lausanne, Switzerland.

出版信息

Cancer Imaging. 2023 Mar 18;23(1):28. doi: 10.1186/s40644-023-00540-3.

Abstract

Recently introduced long-axial field-of-view (LAFOV) PET/CT systems represent one of the most significant advancements in nuclear medicine since the advent of multi-modality PET/CT imaging. The higher sensitivity exhibited by such systems allow for reductions in applied activity and short duration scans. However, we consider this to be just one small part of the story: Instead, the ability to image the body in its entirety in a single FOV affords insights which standard FOV systems cannot provide. For example, we now have the ability to capture a wider dynamic range of a tracer by imaging it over multiple half-lives without detrimental image noise, to leverage lower radiopharmaceutical doses by using dual-tracer techniques and with improved quantification. The potential for quantitative dynamic whole-body imaging using abbreviated protocols potentially makes these techniques viable for routine clinical use, transforming PET-reporting from a subjective analysis of semi-quantitative maps of radiopharmaceutical uptake at a single time-point to an accurate and quantitative, non-invasive tool to determine human function and physiology and to explore organ interactions and to perform whole-body systems analysis. This article will share the insights obtained from 2 years' of clinical operation of the first Biograph Vision Quadra (Siemens Healthineers) LAFOV system. It will also survey the current state-of-the-art in PET technology. Several technologies are poised to furnish systems with even greater sensitivity and resolution than current systems, potentially with orders of magnitude higher sensitivity. Current barriers which remain to be surmounted, such as data pipelines, patient throughput and the hindrances to implementing kinetic analysis for routine patient care will also be discussed.

摘要

最近推出的长轴向视野(LAFOV)PET/CT 系统是核医学领域自多模态 PET/CT 成像问世以来最重要的进展之一。此类系统所展现的更高灵敏度使得可以减少应用的放射性活度和缩短扫描时间。然而,我们认为这只是故事的一小部分:相反,在单个视野中对整个身体进行成像的能力提供了标准视野系统无法提供的见解。例如,我们现在有能力通过在多个半衰期内对示踪剂进行成像而无需有害的图像噪声来捕获更大的示踪剂动态范围,通过使用双示踪剂技术和改善的定量来利用较低的放射性药物剂量。使用简短方案进行定量动态全身成像的潜力使这些技术有可能常规临床应用,将 PET 报告从对放射性药物摄取的半定量图在单个时间点的主观分析转变为准确和定量的、非侵入性的工具,以确定人体功能和生理学,探索器官相互作用,并进行全身系统分析。本文将分享在使用第一台 Biograph Vision Quadra(西门子医疗)LAFOV 系统进行两年临床操作中获得的见解。它还将调查当前的 PET 技术现状。有几种技术有望为系统提供比当前系统更高的灵敏度和分辨率,灵敏度可能高出几个数量级。当前仍然需要克服的障碍,例如数据管道、患者吞吐量以及为常规患者护理实施动力学分析的障碍,也将进行讨论。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/2c35/10024860/c582ed9e4c51/40644_2023_540_Fig1_HTML.jpg

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