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质子束每监测单元剂量计算的射程和调制依赖性

Range and modulation dependencies for proton beam dose per monitor unit calculations.

作者信息

Hsi Wen C, Schreuder Andries N, Moyers Michael F, Allgower Chris E, Farr Jonathan B, Mascia Anthony E

机构信息

Midwest Proton Radiotherapy Institute, Bloomington, Indiana 47408, USA.

出版信息

Med Phys. 2009 Feb;36(2):634-41. doi: 10.1118/1.3056466.

Abstract

Calculations of dose per monitor unit (D/MU) are required in addition to measurements to increase patient safety in the clinical practice of proton radiotherapy. As in conventional photon and electron therapy, the D/MU depends on several factors. This study focused on obtaining range and modulation dependence factors used in D/MU calculations for the double scattered proton beam line at the Midwest Proton Radiotherapy Institute. Three dependencies on range and one dependency on modulation were found. A carefully selected set of measurements was performed to discern these individual dependencies. Dependencies on range were due to: (1) the stopping power of the protons passing through the monitor chamber; (2) the reduction of proton fluence due to nuclear interactions within the patient; and (3) the variation of proton fluence passing through the monitor chamber due to different source-to-axis distances (SADs) for different beam ranges. Different SADs are produced by reconfigurations of beamline elements to provide different field sizes and ranges. The SAD effect on the D/MU varies smoothly as the beam range is varied, except at the beam range for which the first scatterers are exchanged and relocated to accommodate low and high beam ranges. A geometry factor was devised to model the SAD variation effect on the D/MU. The measured D/MU variation as a function of range can be predicted within 1% using the three modeled dependencies on range. Investigation of modulated beams showed that an analytical formula can predict the D/MU dependency as a function of modulation to within 1.5%. Special attention must be applied when measuring the D/MU dependence on modulation to avoid interplay between range and SAD effects.

摘要

除测量外,还需要计算每监测单位剂量(D/MU),以提高质子放射治疗临床实践中的患者安全性。与传统的光子和电子治疗一样,D/MU取决于几个因素。本研究的重点是获得用于中西部质子放射治疗研究所双散射质子束线D/MU计算的射程和调制依赖因子。发现了三种与射程相关的因素和一种与调制相关的因素。进行了一组精心挑选的测量,以辨别这些单独的依赖关系。与射程相关的因素是由于:(1)质子穿过监测室时的阻止本领;(2)患者体内核相互作用导致的质子注量减少;(3)不同射束射程下,由于源轴距(SAD)不同,穿过监测室的质子注量变化。通过重新配置束线元件以提供不同的射野大小和射程,可产生不同的SAD。D/MU的SAD效应随射束射程的变化而平滑变化,除了在更换和重新定位第一个散射体以适应低和高射束射程的射束射程处。设计了一个几何因子来模拟SAD变化对D/MU的影响。使用三种模拟的与射程相关的因素,可以在1%的误差范围内预测测量的D/MU随射程的变化。对调制射束的研究表明,一个解析公式可以将D/MU依赖关系预测为调制的函数,误差在1.5%以内。在测量D/MU对调制的依赖性时,必须特别注意避免射程和SAD效应之间的相互作用。

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本文引用的文献

1
Energy spectrum control for modulated proton beams.调制质子束的能谱控制
Med Phys. 2009 Jun;36(6):2297-308. doi: 10.1118/1.3132422.
8
Dosimetry techniques for narrow proton beam radiosurgery.窄质子束放射外科的剂量测定技术。
Phys Med Biol. 1999 Nov;44(11):2789-801. doi: 10.1088/0031-9155/44/11/308.
10
An analytical approximation of depth-dose distributions for therapeutic proton beams.
Phys Med Biol. 1996 Aug;41(8):1331-9. doi: 10.1088/0031-9155/41/8/006.

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