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Investigation and Application of High Megavoltage X-Ray Imaging Mode in Radiotherapy

机译:高压X射线成像模式在放射治疗中的研究与应用

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After drawbacks and shortages of using conventional kV or MV imaging mode were analyzed, this study proposes a new position verification mode with using the energy larger than 15 MeV or nominal accelerating potential greater than 25 MV X-Ray. The new position verification mode is named HMV imaging mode. Along with the comparison of theoretical analyses, phantom experiments and clinical results to the original imaging modes, this report is going to demonstrate the HMV imaging mode is superior to traditional kV and MV imaging modes. This report first theoretically analyzed three main effects of X-ray interacting with medium by numerous equations and compared their mass attenuation coefficient with different types of tissue. X-ray irradiated on a “Catphan 500” cylinder phantom with different energies to verify these theoretical results. Furthermore, based on phantom experiments’ results, we have done numerous clinical trials and comparisons with patient’s clinical results. The theoretical and experimental results illustrate that the scanned images from HMV mode have a good quality and have ability to identify different tissue components clearly. HMV imaging mode overcomes drawbacks of position verification from both kV and MV level imaging mode as well as keeping advantages of kV and MV imaging mode. The result indicates that HMV is a good position verification mode in radiotherapy.
机译:在分析了使用常规kV或MV成像模式的弊端和不足之后,本研究提出了一种新的位置验证模式,该模式使用的能量大于15 MeV或标称加速电势大于25 MV X射线。新的位置验证模式称为HMV成像模式。连同理论分析,体模实验和临床结果与原始成像模式的比较,本报告将证明HMV成像模式优于传统的kV和MV成像模式。该报告首先通过许多方程式从理论上分析了X射线与介质相互作用的三个主要影响,并将它们的质量衰减系数与不同类型的组织进行了比较。 X射线以不同的能量照射到“ Catphan 500”圆柱体模上,以验证这些理论结果。此外,根据幻像实验的结果,我们进行了许多临床试验,并与患者的临床结果进行了比较。理论和实验结果表明,从HMV模式扫描的图像具有良好的质量,并具有清晰识别不同组织成分的能力。 HMV成像模式克服了kV和MV级别成像模式进行位置验证的缺点,并保留了kV和MV成像模式的优势。结果表明,HMV是放疗中良好的位置验证模式。

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