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On the Detectability of Acoustic Waves Induced Following Irradiation by a Radiotherapy Linear Accelerator

机译:放射线加速器辐照后产生的声波的可检测性

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摘要

Irradiating an object with a megavoltage photon beam generated by a clinical radiotherapy linear accelerator (linac) induces acoustic waves through the photoacoustic effect. The detection and characterization of such acoustic waves has potential applications in radiation therapy dosimetry. The purpose of this work was to gain insight into the properties of such acoustic waves by simulating and experimentally detecting them in a well-defined system consisting of a metal block suspended in a water tank. A novel simulation workflow was developed by combining radiotherapy Monte Carlo and acoustic wave transport simulation techniques. Different setup parameters such as photon beam energy, metal block depth, metal block width, and metal block material were varied, and the simulated and experimental acoustic waveforms showed the same relative amplitude trends and frequency variations for such setup changes. The simulation platform developed in this work can easily be extended to other irradiation situations, and will be an invaluable tool for developing a radiotherapy dosimetry system based on the detection of the acoustic waves induced following linear accelerator irradiation.
机译:用临床放射疗法线性加速器(直线加速器)产生的兆电压光子束照射物体,会通过光声效应感应出声波。这种声波的检测和表征在放射治疗剂量测定中具有潜在的应用。这项工作的目的是通过在由悬浮在水箱中的金属块组成的轮廓分明的系统中进行仿真和实验检测,从而深入了解此类声波的特性。通过结合放射疗法蒙特卡洛和声波传输模拟技术,开发了一种新颖的模拟工作流程。改变了不同的设置参数,例如光子束能量,金属块深度,金属块宽度和金属块材料,并且模拟声波和实验声波波形显示出相同的相对振幅趋势和频率变化。在这项工作中开发的模拟平台可以轻松扩展到其他辐照情况,并且将成为基于检测线性加速器辐照引起的声波而开发放射治疗剂量测定系统的宝贵工具。

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