CRCT, UMR 1037, INSERM, Université Toulouse III Paul Sabatier, France; SCK CEN, Belgian Nuclear Research Centre, Mol, Belgium.
CRCT, UMR 1037, INSERM, Université Toulouse III Paul Sabatier, France.
Phys Med. 2021 May;85:24-31. doi: 10.1016/j.ejmp.2021.04.002. Epub 2021 May 3.
Patient-specific dosimetry in MRT relies on quantitative imaging, pharmacokinetic assessment and absorbed dose calculation. The DosiTest project was initiated to evaluate the uncertainties associated with each step of the clinical dosimetry workflow through a virtual multicentric clinical trial. This work presents the generation of simulated clinical SPECT datasets based on GATE Monte Carlo modelling with its corresponding experimental CT image, which can subsequently be processed by commercial image workstations.
This study considers a therapy cycle of 6.85 GBq Lu-labelled DOTATATE derived from an IAEA-Coordinated Research Project (E23005) on "Dosimetry in Radiopharmaceutical therapy for personalised patient treatment". Patient images were acquired on a GE Infinia-Hawkeye 4 gamma camera using a medium energy (ME) collimator. Simulated SPECT projections were generated based on experimental time points and validated against experimental SPECT projections using flattened profiles and gamma index. The simulated projections were then incorporated into the patient SPECT/CT DICOM envelopes for processing and their reconstruction within a commercial image workstation.
Gamma index passing rate (2% - 1 pixel criteria) between 95 and 98% and average gamma between 0.28 and 0.35 among different time points revealed high similarity between simulated and experimental images. Image reconstruction of the simulated projections was successful on HERMES and Xeleris workstations, a major step forward for the initiation of a multicentric virtual clinical dosimetry trial based on simulated SPECT/CT images.
Realistic Lu patient SPECT projections were generated in GATE. These modelled datasets will be circulated to different clinical departments to perform dosimetry in order to assess the uncertainties in the entire dosimetric chain.
磁共振成像(MRT)中的个体化剂量测定依赖于定量成像、药代动力学评估和吸收剂量计算。DosiTest 项目旨在通过虚拟多中心临床试验,评估临床剂量测定工作流程中每个步骤的不确定性。本工作通过 GATE 蒙特卡罗建模生成模拟临床单光子发射计算机断层扫描(SPECT)数据集及其相应的实验 CT 图像,随后可由商业图像工作站进行处理。
本研究考虑了一个治疗周期,即来自国际原子能机构(IAEA)协调研究项目(E23005)的 6.85GBqLu 标记 DOTATATE,该项目为“个体化患者治疗的放射性药物治疗中的剂量学”。使用中能(ME)准直器在 GE Infinia-Hawkeye 4 伽玛相机上采集患者图像。基于实验时间点生成模拟 SPECT 投影,并使用扁平化轮廓和伽玛指数对其与实验 SPECT 投影进行验证。然后,将模拟投影纳入患者 SPECT/CT DICOM 信封中进行处理,并在商业图像工作站内对其进行重建。
不同时间点之间的伽玛指数通过率(2%-1 像素标准)为 95%-98%,平均伽玛值为 0.28-0.35,这表明模拟图像与实验图像具有高度相似性。模拟投影在 HERMES 和 Xeleris 工作站上的图像重建取得成功,这是基于模拟 SPECT/CT 图像启动多中心虚拟临床剂量测定试验的重要一步。
在 GATE 中生成了逼真的 Lu 患者 SPECT 投影。这些模型数据集将分发给不同的临床科室进行剂量测定,以评估整个剂量测定链中的不确定性。