Razdevšek Gašper, Fakhri Georges El, Marin Thibault, Dolenec Rok, Orehar Matic, Chemli Yanis, Gola Alberto Giacomo, Gascon David, Majewski Stan, Pestotnik Rok
Experimental Particle Physics Department (F9), Jožef Stefan Institute, Ljubljana, Slovenia.
Yale PET Center, Yale University School of Medicine, New Haven, Connecticut, USA.
Med Phys. 2025 May;52(5):2845-2860. doi: 10.1002/mp.17741. Epub 2025 Mar 16.
Panel detectors have the potential to provide a flexible, modular approach to Positron Emission Tomography (PET), enabling customization to meet patient-specific needs and scan objectives. The panel design allows detectors to be positioned close to the patient, aiming to enhance sensitivity and spatial resolution through improved geometric coverage and reduced noncollinearity blurring. Parallax error can be mitigated using depth of interaction (DOI) information.
One of the key questions the article addresses is: Do panel detectors offer viable clinical imaging capabilities, or does limited angular sampling restrict their utility by causing image distortions and artifacts? Additionally, this article explores the scalability of panel detectors for constructing scanners with a long axial field of view (LAFOV).
Monte Carlo simulations using GATE software were used to assess the performance of panel detectors with various DOI resolutions and Time-of-Flight (TOF) resolutions as fine as 70 ps. The 30 30 cm panels comprised pixelated 3 3 20 mm LSO crystals. Simulations were run on large high-performance computing clusters (122,000 CPU cores). Open-source CASToR software was used for (TOF MLEM) image reconstruction. The image quality of the scanners was assessed using a range of phantoms (NEMA, Derenzo, XCAT, and a high-resolution brain phantom). The Siemens Biograph Vision PET/CT scanner served as the reference model. The performance of larger 120 60 cm panels was also evaluated.
Sensitivity increases over threefold when panel-panel distance is reduced from 80 to 40 cm. The noise equivalent count rate, unmodified by TOF gain, of the panel detectors matches that of the reference clinical scanner at a distance of approximately 50 cm between the panels. Spatial resolution perpendicular to the panels improves from 8.7 to 1.6 mm when the panel-panel distance is reduced, and 70 ps + DOI detectors are used instead of 200 ps, no-DOI detectors. With enhanced TOF and DOI capabilities, panel detectors achieve image quality that matches or surpasses the reference scanner while using about four times less detector material. These detectors can be extended for LAFOV imaging without distortions or artifacts. Additionally, improving TOF and DOI performance enhances contrast-to-noise ratios, thereby improving lesion detection.
A compact 2-panel PET scanner can match the performance of conventional scanners, producing high-quality, distortion-free images. Its mobility and flexibility enable novel applications, including bedside imaging and intensive care unitdiagnostics, as well as imaging in positions such as sitting or standing. Furthermore, the modularity of panel detectors offers the potential to construct cost-effective, high-performance total-body imaging systems.
平板探测器有潜力为正电子发射断层扫描(PET)提供一种灵活的模块化方法,能够进行定制以满足患者特定需求和扫描目标。平板设计允许探测器靠近患者放置,旨在通过改善几何覆盖和减少非共线性模糊来提高灵敏度和空间分辨率。可以使用相互作用深度(DOI)信息来减轻视差误差。
本文探讨的关键问题之一是:平板探测器是否具备可行的临床成像能力,还是有限的角度采样会因导致图像失真和伪影而限制其效用?此外,本文还研究了平板探测器用于构建具有长轴向视野(LAFOV)扫描仪的可扩展性。
使用GATE软件进行蒙特卡洛模拟,以评估具有各种DOI分辨率和高达70 ps的飞行时间(TOF)分辨率的平板探测器的性能。30×30 cm的平板由像素化的3×3×20 mm LSO晶体组成。模拟在大型高性能计算集群(122,000个CPU核心)上运行。使用开源的CASToR软件进行(TOF MLEM)图像重建。使用一系列体模(NEMA、Derenzo、XCAT和高分辨率脑体模)评估扫描仪的图像质量。以西门子Biograph Vision PET/CT扫描仪作为参考模型。还评估了更大的120×60 cm平板的性能。
当平板间距离从80 cm减小到40 cm时,灵敏度提高了三倍多。在平板间距离约为50 cm时,平板探测器未经TOF增益修正的噪声等效计数率与参考临床扫描仪的噪声等效计数率相当。当平板间距离减小时,使用70 ps + DOI探测器而非200 ps、无DOI探测器时,垂直于平板方向的空间分辨率从8.7 mm提高到1.6 mm。随着TOF和DOI能力的增强,平板探测器在使用约四分之一探测器材料的情况下,实现了与参考扫描仪相当或更高的图像质量。这些探测器可扩展用于LAFOV成像,不会产生失真或伪影。此外,提高TOF和DOI性能可提高对比度噪声比,从而改善病变检测。
紧凑型双平板PET扫描仪可与传统扫描仪的性能相匹配,生成高质量、无失真的图像。其移动性和灵活性使其可用于多种新颖应用,包括床边成像和重症监护病房诊断,以及坐姿或站姿成像。此外,平板探测器的模块化提供了构建经济高效的高性能全身成像系统的潜力。