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Investigation of ultrasonic properties of MAGIC gels for pulse-echo gel dosimetry

机译:用于脉冲回波凝胶剂量测定的maGIC凝胶超声波特性研究

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摘要

This thesis describes investigations into the design and evaluation of novel ultrasonic methods for 3-dimensional ionising radiation dose verification. Pulse-echo ultrasound methods were investigated for the measurement and analysis of complex radiation therapy dose delivery.The physical properties of MAGIC (Methacrylic and Ascorbic acid in Gelatin Initiated by Copper) polymer gel dosimeters have been characterized. The variations of speed of sound, ultrasonic attenuation coefficient and density of MAGIC gel with radiation dose and temperature have been quantified. This extends work that has previously been reported for the properties of this gel to the effect of measurement temperature on the results. The facilities to perform these measurements were specified, constructed and evaluated as part of the project.The measurement of radiation dose using ultrasound back scatter from an interface between the polymer gel dosimeter and an inert reflector is demonstrated. To enable the measurement of radiation dose using pulse-echo ultrasound methods a novel inert material has been specified, manufactured and characterised. This material is matched to the acoustic impedance of MAGIC gel to produce the most dose-sensitive reflections.The reflections from the interface between the inert reflector and dose-dependent MAGIC gel have been analysed using both a single element transducer and a commercial ultrasound scanner. Both measurement systems demonstrate the same dose and temperature dependence of the ultrasonic reflection. A methodology has been developed to relate pixel values from the ultrasound scanner to the amplitude of the reflected ultrasound signal. A phantom consisting of an array of threads formed from the inert backscattering material has been designed and constructed and a method of extracting pixel data from images of the array acquired using a commercial ultrasound scanner has been developed, so that multiple imaging positions could be used to perform a 3-dimensional assessment of radiation dose distributions.It has been demonstrated that a pulse-echo technique using a commercial ultrasound scanner shows promise for radiation gel dosimetry. Further investigation and alternative polymer gel and inert reflector combinations may improve these techniques.
机译:本文介绍了对用于3维电离辐射剂量验证的新型超声方法的设计和评估的研究。研究了脉冲回波超声方法对复杂放射治疗剂量传递的测量和分析。表征了MAGIC(铜引发的明胶中的甲基丙烯酸和抗坏血酸)的聚合物凝胶剂量计的物理性能。定量了声速,超声衰减系数和MAGIC凝胶密度随辐射剂量和温度的变化。这将先前报道的有关该凝胶特性的工作扩展到测量温度对结果的影响。作为项目的一部分,对执行这些测量的设施进行了指定,构建和评估。演示了使用来自聚合物凝胶剂量计和惰性反射器之间界面的超声反向散射来测量辐射剂量。为了能够使用脉冲回波超声方法测量辐射剂量,已经指定,制造和表征了新型惰性材料。这种材料与MAGIC凝胶的声阻抗相匹配,以产生对剂量最敏感的反射。惰性反射器和剂量依赖性MAGIC凝胶之间的界面反射已使用单元件换能器和商用超声扫描仪进行了分析。两种测量系统均显示出相同的剂量和温度依赖性的超声波反射。已经开发出一种方法,以将来自超声扫描仪的像素值与反射的超声信号的幅度相关联。已经设计和构造了由惰性反向散射材料形成的由线阵列组成的模型,并开发了一种从使用商用超声扫描仪采集的阵列图像中提取像素数据的方法,从而可以使用多个成像位置进行辐射剂量分布的3维评估。已证明使用商用超声扫描仪的脉冲回波技术显示了辐射凝胶剂量测定的前景。进一步的研究以及聚合物凝胶和惰性反射器的替代组合可以改善这些技术。

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  • 作者

    Atkins Timothy John;

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  • 年度 2014
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  • 原文格式 PDF
  • 正文语种 {"code":"en","name":"English","id":9}
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