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在德克萨斯大学 MD 安德森癌症中心质子治疗中心,对离散点扫描质子束传输系统进行调试。

Commissioning of the discrete spot scanning proton beam delivery system at the University of Texas M.D. Anderson Cancer Center, Proton Therapy Center, Houston.

机构信息

Department of Radiation Physics, U.T. MD Anderson Cancer Center, 1515 Holcombe Boulevard, Houston, Texas 77030, USA.

出版信息

Med Phys. 2010 Jan;37(1):154-63. doi: 10.1118/1.3259742.

Abstract

PURPOSE

To describe a summary of the clinical commissioning of the discrete spot scanning proton beam at the Proton Therapy Center, Houston (PTC-H).

METHODS

Discrete spot scanning system is composed of a delivery system (Hitachi ProBeat), an electronic medical record (Mosaiq V 1.5), and a treatment planning system (TPS) (Eclipse V 8.1). Discrete proton pencil beams (spots) are used to deposit dose spot by spot and layer by layer for the proton distal ranges spanning from 4.0 to 30.6 g/cm2 and over a maximum scan area at the isocenter of 30 x 30 cm2. An arbitrarily chosen reference calibration condition has been selected to define the monitor units (MUs). Using radiochromic film and ion chambers, the authors have measured spot positions, the spot sizes in air, depth dose curves, and profiles for proton beams with various energies in water, and studied the linearity of the dose monitors. In addition to dosimetric measurements and TPS modeling, significant efforts were spent in testing information flow and recovery of the delivery system from treatment interruptions.

RESULTS

The main dose monitors have been adjusted such that a specific amount of charge is collected in the monitor chamber corresponding to a single MU, following the IAEA TRS 398 protocol under a specific reference condition. The dose monitor calibration method is based on the absolute dose per MU, which is equivalent to the absolute dose per particle, the approach used by other scanning beam institutions. The full width at half maximum for the spot size in air varies from approximately 1.2 cm for 221.8 MeV to 3.4 cm for 72.5 MeV. The measured versus requested 90% depth dose in water agrees to within 1 mm over ranges of 4.0-30.6 cm. The beam delivery interlocks perform as expected, guarantying the safe and accurate delivery of the planned dose.

CONCLUSIONS

The dosimetric parameters of the discrete spot scanning proton beam have been measured as part of the clinical commissioning program, and the machine is found to function in a safe manner, making it suitable for patient treatment.

摘要

目的

描述休斯顿质子治疗中心(PTC-H)离散点扫描质子束的临床委托总结。

方法

离散点扫描系统由输送系统(日立 ProBeat)、电子病历(Mosaiq V1.5)和治疗计划系统(Eclipse V8.1)组成。离散质子铅笔束(点)用于逐层逐点沉积剂量,质子远端范围从 4.0 到 30.6g/cm2,在等中心最大扫描面积为 30x30cm2。选择任意参考校准条件来定义监测单位(MU)。作者使用放射色胶片和离子室测量了质子束在水中的各种能量的点位置、空气中的点尺寸、深度剂量曲线和轮廓,并研究了剂量监测器的线性度。除了剂量学测量和 TPS 建模外,还投入了大量精力测试输送系统在治疗中断时的信息流和恢复情况。

结果

主要剂量监测器已进行调整,使得在特定参考条件下,根据国际原子能机构 TRS398 协议,在监测室内收集与单个 MU 对应的特定电荷量。剂量监测器校准方法基于每个 MU 的绝对剂量,这相当于每个粒子的绝对剂量,这是其他扫描束机构所采用的方法。空气中的点尺寸半高全宽从 221.8MeV 的约 1.2cm 变化到 72.5MeV 的 3.4cm。在 4.0-30.6cm 的范围内,水中测量的 90%深度剂量与请求的剂量一致,误差在 1mm 以内。束输送互锁按预期执行,保证了计划剂量的安全准确输送。

结论

作为临床委托计划的一部分,已经测量了离散点扫描质子束的剂量学参数,并且发现机器以安全的方式运行,适合患者治疗。

相似文献

2
The M. D. Anderson proton therapy system.MD安德森质子治疗系统。
Med Phys. 2009 Sep;36(9):4068-83. doi: 10.1118/1.3187229.

引用本文的文献

本文引用的文献

1
The M. D. Anderson proton therapy system.MD安德森质子治疗系统。
Med Phys. 2009 Sep;36(9):4068-83. doi: 10.1118/1.3187229.

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