Northwest Medical Physics Center, Lynnwood, Washington, USA.
Varian Medical Systems, Palo Alto, California, USA.
J Appl Clin Med Phys. 2022 Jun;23(6):e13581. doi: 10.1002/acm2.13581. Epub 2022 Mar 15.
An anthropomorphic phantom has been developed by Varian Medical Systems for commissioning multileaf-collimator (MLC), stereotactic radiosurgery (SRS) treatments on Varian TrueBeam and Edge linear accelerators. Northwest Medical Physics Center (NMPC) has collected end-to-end data on these machines, at six independent clinical sites, to establish baseline dosimetric and geometric commissioning criteria for SRS measurements with this phantom. The Varian phantom is designed to accommodate four interchangeable target cassettes, each designed for a specific quality assurance function. End-to-end measurements utilized the phantom to verify the coincidence of treatment isocenter with a hidden target in a Winston-Lutz cassette after localization using cone-beam computed tomography (CBCT). Dose delivery to single target (2 cm) and single-isocenter, multitarget (2 and 1 cm) geometries was verified using ionization chamber and EBT3 film cassettes. A nominal dose of 16 Gy was prescribed for each plan using a site's standard beam geometry for SRS cases. Measurements were performed with three Millennium and three high-definition MLC machines at beam energies of 6-MV and 10-MV flattening-filter-free energies. Each clinical site followed a standardized procedure for phantom simulation, treatment planning, quality assurance, and treatment delivery. All treatment planning and delivery was performed using ARIA oncology information system and Eclipse treatment planning software. The isocenter measurements and irradiated film were analyzed using DoseLab quality assurance software; gamma criteria of 3%/1 mm, 3%/0.5 mm, and 2%/1 mm were applied for film analysis. Based on the data acquired in this work, the recommended commissioning criteria for end-to-end SRS measurements with the Varian phantom are as follows: coincidence of treatment isocenter and CBCT-aligned hidden target < 1 mm, agreement of measured chamber dose with calculated dose ≤ 5%, and film gamma passing > 90% for gamma criteria of 3%/1 mm after DoseLab auto-registration shifts ≤ 1 mm in any direction.
瓦里安医疗系统(Varian Medical Systems)开发了一种拟人化体模,用于对瓦里安 TrueBeam 和 Edge 直线加速器进行多叶准直器(MLC)、立体定向放射外科(SRS)治疗的调试。西北医学物理中心(Northwest Medical Physics Center,NMPC)在六个独立的临床站点收集了这些机器的端到端数据,以建立使用这种体模进行 SRS 测量的基本剂量学和几何调试标准。Varian 体模设计有四个可互换的目标盒,每个目标盒都设计用于特定的质量保证功能。端到端测量使用体模来验证使用锥形束 CT(CBCT)定位后,治疗等中心与 Winston-Lutz 盒中的隐藏目标的重合度。使用电离室和 EBT3 胶片盒验证了单个目标(2cm)和单等中心、多目标(2cm 和 1cm)几何形状的剂量传递。对于每个计划,使用站点的 SRS 标准射束几何形状规定了 16Gy 的名义剂量。在 6MV 和 10MV 无均整滤过能量下,对 3 台 Millennium 和 3 台高清 MLC 机器进行了测量。每个临床站点都遵循了体模模拟、治疗计划、质量保证和治疗交付的标准化程序。所有治疗计划和交付都是在 ARIA 肿瘤信息系统和 Eclipse 治疗计划软件上完成的。使用 DoseLab 质量保证软件分析等中心测量值和照射胶片;胶片分析应用了 3%/1mm、3%/0.5mm 和 2%/1mm 的伽马标准。基于本工作中获得的数据,Varian 体模端到端 SRS 测量的推荐调试标准如下:治疗等中心和与 CBCT 对齐的隐藏目标的重合度<1mm,测量腔剂量与计算剂量的一致性≤5%,在 DoseLab 自动配准后,胶片伽马通过率>90%,在任何方向上的自动配准偏移量≤1mm 时,伽马标准为 3%/1mm。