Dartmouth College, NH, Lebanon.
Beaumont Proton Therapy Center, Detroit, MI, United States of America.
Phys Med Biol. 2023 Feb 17;68(4):045016. doi: 10.1088/1361-6560/acb753.
To demonstrates the ability of an ultra-fast imaging system to measure high resolution spatial and temporal beam characteristics of a synchrocyclotron proton pencil beam scanning (PBS) system.An ultra-fast (1 kHz frame rate), intensified CMOS camera was triggered by a scintillation sheet coupled to a remote trigger unit for beam on detection. The camera was calibrated using the linear (> 0.9922) dose response of a single spot beam to varying currents. Film taken for the single spot beam was used to produce a scintillation intensity to absolute dose calibration.. Spatial alignment was confirmed with the film, where theand-profiles of the single spot cumulative image agreed within 1 mm. A sample brain patient plan was analyzed to demonstrate dose and temporal accuracy for a clinically-relevant plan, through agreement within 1 mm to the planned and delivered spot locations. The cumulative dose agreed with the planned dose with a gamma passing rate of 97.5% (2 mm/3%, 10% dose threshold).. This is the first system able to capture single-pulse spatial and temporal information for the unique pulse structure of a synchrocyclotron PBS systems at conventional dose rates, enabled by the ultra-fast sampling frame rate of this camera. This study indicates that, with continued camera development and testing, target applications in clinical and FLASH proton beam characterization and validation are possible.
为了展示超快速成像系统测量同步回旋质子铅笔束扫描 (PBS) 系统高分辨率空间和时间束特性的能力。采用超快速(1 kHz 帧率)、增强型 CMOS 相机,通过与远程触发单元耦合的闪烁片触发进行束检测。使用单个光斑束的线性(> 0.9922)剂量响应对相机进行校准,以获得不同电流的剂量响应。使用单个光斑束的胶片进行闪烁强度到绝对剂量校准。通过胶片确认空间对准,其中单个光斑累积图像的和轮廓在 1 毫米内一致。分析了一个脑患者计划,以证明对于临床相关计划的剂量和时间准确性,通过与计划和交付光斑位置的 1 毫米内一致性。累积剂量与计划剂量一致,伽马通过率为 97.5%(2 毫米/3%,10%剂量阈值)。这是第一个能够以常规剂量率捕获同步回旋 PBS 系统独特脉冲结构的单脉冲空间和时间信息的系统,这得益于该相机的超快速采样帧率。这项研究表明,随着相机的不断开发和测试,在临床和 FLASH 质子束特性和验证中实现目标应用是可能的。