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空气比释动能与射野大小随射野内与射野边缘剂量梯度的关系

Parametrization of in-air spot size as a function of energy and air gap for the ProteusPLUS pencil beam scanning proton therapy system.

机构信息

Department of Radiation Oncology, Miami Cancer Institute, Baptist Health South Florida, Miami, FL, USA.

Department of Radiation Oncology, Herbert Wertheim College of Medicine, Florida International University, Miami, FL, USA.

出版信息

Radiol Phys Technol. 2020 Dec;13(4):392-397. doi: 10.1007/s12194-020-00589-w. Epub 2020 Oct 10.

Abstract

The purpose of this study was to parametrize the in-air one sigma spot size for various energies and air gaps in pencil beam scanning (PBS) proton therapy. The current study included range shifters with a water equivalent thickness (WET) of 40 mm (RS40) and 75 mm (RS75). For RS40, the spot sizes were measured for energies ranging from 80 to 225 MeV in increments of 2.5 MeV, whereas the air gap was varied from 5 to 25 cm in increments of 2.5 cm. For RS75, the spot sizes were measured for energies ranging from 120 to 225 MeV in increments of 2.5 MeV, whereas the air gap was varied from 5 to 35 cm in increments of 2.5 cm. For both RS40 and RS75, all measurements (n = 1090) were acquired at the isocenter using a Lynx 2D scintillation detector. For RS40, the spot sizes increased from 3.1 mm to 10.4 mm, whereas the variation in spot sizes for RS75 ranged from 3.3 mm to 13.1 mm. For each range shifter, an analytical equation demonstrating the relationship of the spot size with the proton energy and air gap was obtained. The best parametrization results were obtained with the 3 degree polynomial fits of the energy and air gap parameters. The average difference between the modeled and measured spot sizes was 0.0 ± 0.1 mm (range, - 0.24-0.21 mm) for RS40, and 0.0 ± 0.1 mm (range, - 0.23-0.15 mm) for RS75. In conclusion, the analytical model agrees within ± 0.25 mm of the measured spot sizes on a ProteusPLUS PBS proton system with a PBS dedicated nozzle.

摘要

本研究旨在为铅笔束扫描(PBS)质子治疗中的各种能量和空气间隙参数化空中 1σ 光斑大小。本研究包括水等效厚度(WET)为 40mm(RS40)和 75mm(RS75)的射程移动器。对于 RS40,在能量范围从 80 到 225MeV 之间,每隔 2.5MeV 测量光斑大小,而空气间隙从 5 到 25cm 每隔 2.5cm 变化。对于 RS75,在能量范围从 120 到 225MeV 之间,每隔 2.5MeV 测量光斑大小,而空气间隙从 5 到 35cm 每隔 2.5cm 变化。对于 RS40 和 RS75,所有测量值(n=1090)都在等中心处使用 Lynx 2D 闪烁探测器进行测量。对于 RS40,光斑大小从 3.1mm 增加到 10.4mm,而对于 RS75,光斑大小的变化范围从 3.3mm 到 13.1mm。对于每个射程移动器,都获得了一个分析方程式,该方程式展示了光斑大小与质子能量和空气间隙的关系。使用能量和空气间隙参数的 3 次多项式拟合获得了最佳参数化结果。对于 RS40,模型化和测量光斑大小之间的平均差异为 0.0±0.1mm(范围,-0.24-0.21mm),对于 RS75,平均差异为 0.0±0.1mm(范围,-0.23-0.15mm)。总之,在 ProteusPLUS PBS 质子系统上,使用专用 PBS 喷嘴的分析模型与测量光斑大小的差异在±0.25mm 以内。

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