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全身PET/CT:静态和动态成像中定量分析的临床价值及未来展望

Total Body PET/CT: Clinical Value and Future Aspects of Quantification in Static and Dynamic Imaging.

作者信息

Rathod Narendra, Jutidamrongphan Warissara, Bosbach Wolfram Andreas, Chen Yizhou, Penner Jan Luca, Sari Hasan, Zeimpekis Konstantinos, Montes Alejandro López, Moskal Pawel, Stepien Ewa, Shi Kuangyu, Rominger Axel, Seifert Robert

机构信息

Department of Nuclear Medicine, Inselspital, Bern University Hospital, University of Bern, Switzerland.

Department of Nuclear Medicine, Inselspital, Bern University Hospital, University of Bern, Switzerland.

出版信息

Semin Nucl Med. 2025 Jan;55(1):98-106. doi: 10.1053/j.semnuclmed.2024.11.004. Epub 2024 Nov 30.

Abstract

Total body (TB) Positron Emission Tomography (PET) / Computed Tomography (CT) scanners have revolutionized nuclear medicine by enabling whole-body imaging in a single bed position. This review assesses the physical and clinical value of TB-PET/CT, with a focus on the advancements in both static and dynamic imaging, as well as the evolving quantification techniques. The significantly enhanced sensitivity of TB scanners can reduce radiation exposure and scan time, offering improved patient comfort and making it particularly useful for pediatric imaging and various other scenarios. Shorter scan times also decrease motion artifacts, leading to higher-quality images and better diagnostic accuracy. Dynamic PET imaging with TB scanners extends these advantages by capturing temporal changes in tracer uptake over time, providing real-time insights into both structural and functional assessment, and promoting the ability to monitor disease progression and treatment response. We also present CT-free attenuation correction methods that utilize the increased sensitivity of TB-PET as a potential improvement for dynamic TB-PET protocols. In static imaging, emerging quantification techniques such as dual-tracer PET using TB scanners allow imaging of two biological pathways, simultaneously, for a more comprehensive assessment of disease. In addition, positronium imaging, a novel technique utilizing positronium lifetime measurements, is introduced as a promising aspect for providing structural information alongside functional quantification. Finally, the potential of expanding clinical applications with the increased sensitivity of TB-PET/CT scanners is discussed.

摘要

全身(TB)正电子发射断层扫描(PET)/计算机断层扫描(CT)扫描仪通过能够在单一床位进行全身成像,彻底改变了核医学。本综述评估了TB - PET/CT的物理和临床价值,重点关注静态和动态成像的进展以及不断发展的定量技术。TB扫描仪显著提高的灵敏度可以减少辐射暴露和扫描时间,提高患者舒适度,使其对儿科成像和各种其他情况特别有用。更短的扫描时间还减少了运动伪影,从而产生更高质量的图像和更好的诊断准确性。TB扫描仪的动态PET成像通过捕获示踪剂摄取随时间的变化来扩展这些优势,为结构和功能评估提供实时见解,并提高监测疾病进展和治疗反应的能力。我们还介绍了无CT衰减校正方法,这些方法利用TB - PET增加的灵敏度作为动态TB - PET协议的潜在改进。在静态成像中,诸如使用TB扫描仪的双示踪剂PET等新兴定量技术允许同时对两条生物学途径进行成像,以便更全面地评估疾病。此外,正电子成像作为一种利用正电子寿命测量的新技术被引入,它是在功能定量的同时提供结构信息的一个有前景的方面。最后,讨论了随着TB - PET/CT扫描仪灵敏度的提高而扩大临床应用的潜力。

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