Koniar Helena, McNeil Scott, Wharton Luke, Ingham Aidan, Van de Voorde Michiel, Ooms Maarten, Sekar Sathiya, Rodríguez-Rodríguez Cristina, Kunz Peter, Radchenko Valery, Rahmim Arman, Uribe Carlos, Yang Hua, Schaffer Paul
TRIUMF, Life Sciences Division, 4004 Wesbrook Mall, Vancouver, BC, V6T 2A3, Canada.
Department of Physics and Astronomy, University of British Columbia, 6224 Agricultural Road, Vancouver, BC, CAN V6T, Canada.
EJNMMI Phys. 2024 Sep 14;11(1):77. doi: 10.1186/s40658-024-00682-8.
Element-equivalent matched theranostic pairs facilitate quantitative in vivo imaging to establish pharmacokinetics and dosimetry estimates in the development of preclinical radiopharmaceuticals. Terbium radionuclides have significant potential as matched theranostic pairs for multipurpose applications in nuclear medicine. In particular, Tb (t = 5.32 d) and Tb (t = 6.89 d) have been proposed as a theranostic pair for their respective applications in single photon emission computed tomography (SPECT) imaging and targeted beta therapy. Our study assessed the performance of preclinical quantitative SPECT imaging with Tb and Tb. A hot rod resolution phantom with rod diameters ranging between 0.85 and 1.70 mm was filled with either Tb (21.8 ± 1.7 MBq/mL) or Tb (23.6 ± 1.9 MBq/mL) and scanned with the VECTor preclinical SPECT/CT scanner. Image performance was evaluated with two collimators: a high energy ultra high resolution (HEUHR) collimator and an extra ultra high sensitivity (UHS) collimator. SPECT images were reconstructed from photopeaks at 43.0 keV, 86.6 keV, and 105.3 keV for Tb and 48.9 keV and 74.6 keV for Tb. Quantitative SPECT images of the resolution phantoms were analyzed to report inter-rod contrast, recovery coefficients, and contrast-to-noise metrics.
Quantitative SPECT images of the resolution phantom established that the HEUHR collimator resolved all rods for Tb and Tb, and the UHS collimator resolved rods ≥ 1.10 mm for Tb and ≥ 1.30 mm for Tb. The HEUHR collimator maintained better quantitative accuracy than the UHS collimator with recovery coefficients up to 92%. Contrast-to-noise metrics were also superior with the HEUHR collimator.
Both Tb and Tb demonstrated potential for applications in preclinical quantitative SPECT imaging. The high-resolution collimator achieves < 0.85 mm resolution and maintains quantitative accuracy in small volumes which is advantageous for assessing sub organ activity distributions in small animals. This imaging method can provide critical quantitative information for assessing and optimizing preclinical Tb-radiopharmaceuticals.
元素等效匹配的诊疗对有助于进行体内定量成像,以在临床前放射性药物的研发中建立药代动力学和剂量测定估计值。铽放射性核素作为核医学中多用途应用的匹配诊疗对具有巨大潜力。特别是,Tb(半衰期t = 5.32天)和Tb(半衰期t = 6.89天)已被提议作为诊疗对,分别用于单光子发射计算机断层扫描(SPECT)成像和靶向β治疗。我们的研究评估了使用Tb和Tb进行临床前定量SPECT成像的性能。一个棒直径在0.85至1.70毫米之间的热棒分辨率体模,分别填充Tb(21.8±1.7 MBq/mL)或Tb(23.6±1.9 MBq/mL),并使用VECTor临床前SPECT/CT扫描仪进行扫描。使用两种准直器评估图像性能:高能超高分辨率(HEUHR)准直器和超高灵敏度(UHS)准直器。对于Tb,从43.0 keV、86.6 keV和105.3 keV的光电峰重建SPECT图像;对于Tb,从48.9 keV和74.6 keV的光电峰重建SPECT图像。分析分辨率体模的定量SPECT图像,以报告棒间对比度、恢复系数和对比噪声指标。
分辨率体模的定量SPECT图像表明,HEUHR准直器能分辨出Tb和Tb的所有棒,UHS准直器能分辨出Tb直径≥1.10毫米和Tb直径≥1.30毫米的棒。HEUHR准直器保持了比UHS准直器更好的定量准确性,恢复系数高达92%。HEUHR准直器的对比噪声指标也更优。
Tb和Tb在临床前定量SPECT成像中均显示出应用潜力。高分辨率准直器实现了<0.8毫米的分辨率,并在小体积中保持定量准确性,这有利于评估小动物体内亚器官的活性分布。这种成像方法可为评估和优化临床前Tb放射性药物提供关键的定量信息。