Department of Imaging, Massachusetts General Hospital and Harvard Medical School, Boston, MA 02114, USA.
Phys Med Biol. 2011 Jul 7;56(13):4041-57. doi: 10.1088/0031-9155/56/13/019. Epub 2011 Jun 15.
We used a mobile positron emission tomography (PET) scanner positioned within the proton therapy treatment room to study the feasibility of proton range verification with an in-room, stand-alone PET system, and compared with off-line equivalent studies. Two subjects with adenoid cystic carcinoma were enrolled into a pilot study in which in-room PET scans were acquired in list-mode after a routine fractionated treatment session. The list-mode PET data were reconstructed with different time schemes to generate in-room short, in-room long and off-line equivalent (by skipping coincidences from the first 15 min during the list-mode reconstruction) PET images for comparison in activity distribution patterns. A phantom study was followed to evaluate the accuracy of range verification for different reconstruction time schemes quantitatively. The in-room PET has a higher sensitivity compared to the off-line modality so that the PET acquisition time can be greatly reduced from 30 to <5 min. Features in deep-site, soft-tissue regions were better retained with in-room short PET acquisitions because of the collection of (15)O component and lower biological washout. For soft tissue-equivalent material, the distal fall-off edge of an in-room short acquisition is deeper compared to an off-line equivalent scan, indicating a better coverage of the high-dose end of the beam. In-room PET is a promising low cost, high sensitivity modality for the in vivo verification of proton therapy. Better accuracy in Monte Carlo predictions, especially for biological decay modeling, is necessary.
我们使用位于质子治疗室内部的移动正电子发射断层扫描(PET)扫描仪,研究使用室内独立 PET 系统进行质子射程验证的可行性,并与离线等效研究进行比较。两名患有腺样囊性癌的患者参加了一项试点研究,在该研究中,在常规分次治疗后以列表模式采集室内 PET 扫描。使用不同的时间方案重建列表模式 PET 数据,以生成室内短、室内长和离线等效(通过在列表模式重建期间跳过前 15 分钟的符合事件)PET 图像,以比较活性分布模式。随后进行了一项体模研究,以定量评估不同重建时间方案对射程验证的准确性。与离线模式相比,室内 PET 的灵敏度更高,因此 PET 采集时间可以从 30 分钟大大缩短至<5 分钟。由于采集(15)O 成分和较低的生物清除,室内短 PET 采集可以更好地保留深部软组织区域的特征。对于软组织等效材料,与离线等效扫描相比,室内短采集的远端下降边缘更深,表明对光束高剂量端的覆盖更好。室内 PET 是一种有前途的低成本、高灵敏度的质子治疗体内验证方法。需要更好的蒙特卡罗预测准确性,特别是对于生物衰减建模。