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18兆伏直线加速器产生的光中子的模体剂量测定与能谱分析

In-phantom dosimetry and spectrometry of photoneutrons from an 18 MV linear accelerator.

作者信息

d'Errico F, Nath R, Tana L, Curzio G, Alberts W G

机构信息

Yale University School of Medicine, Department of Therapeutic Radiology, New Haven, Connecticut 06510, USA.

出版信息

Med Phys. 1998 Sep;25(9):1717-24. doi: 10.1118/1.598352.

Abstract

A combination of three superheated drop detectors with different neutron energy responses was developed to evaluate dose-equivalent and energy distributions of photoneutrons in a phantom irradiated by radiotherapy high-energy x-ray beams. One of the three detectors measures the total neutron dose equivalent and the other two measure the contributions from fast neutrons above 1 and 5.5 MeV, respectively. In order to test the new method, the neutron field produced by the 10 cm X 10 cm x-ray beam of an 18 MV radiotherapy accelerator was studied. Measurements were performed inside a tissue-equivalent liquid phantom, at depths of 1, 5, 10 and 15 cm and at lateral distances of 0, 10, and 20 cm from the central axis. These data were used to calculate the average integral dose to the radiotherapy patient from direct neutrons as well as from neutrons transmitted through the accelerator head. The characteristics of the dosimeters were confirmed by results in excellent agreement with those of prior studies. Track etch detectors were also used and provided an independent verification of the validity of this new technique. Within the primary beam, we measured a neutron entrance dose equivalent of 4.5 mSv per Gy of photons. It was observed that fast neutrons above 1 MeV deliver most of the total neutron dose along the beam axis. Their relative contribution increases with depth, from about 60% at the entrance to over 90% at a depth of 10 cm. Thus, the average energy increases with depth in the phantom as neutron spectra harden.

摘要

开发了一种由三个具有不同中子能量响应的过热液滴探测器组成的组合装置,以评估在放射治疗高能X射线束照射的体模中光中子的剂量当量和能量分布。三个探测器中的一个测量总中子剂量当量,另外两个分别测量能量高于1 MeV和5.5 MeV的快中子的贡献。为了测试这种新方法,研究了一台18 MV放射治疗加速器的10 cm×10 cm X射线束产生的中子场。在组织等效液体体模内,在1、5、10和15 cm的深度以及距中心轴0、10和20 cm的横向距离处进行了测量。这些数据用于计算放射治疗患者因直接中子以及透过加速器头部的中子而产生的平均积分剂量。剂量计的特性通过与先前研究结果高度一致的结果得到了证实。还使用了径迹蚀刻探测器,并对这项新技术的有效性进行了独立验证。在原射线束内,我们测量到每Gy光子的中子入射剂量当量为4.5 mSv。据观察,能量高于1 MeV的快中子在束轴上贡献了大部分总中子剂量。它们的相对贡献随深度增加,从入射处的约60%增加到10 cm深度处的90%以上。因此,随着体模中中子能谱变硬,平均能量随深度增加。

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