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Robustness of Time-Multiplexed Hyperthermia to Temperature Dependent Thermal Tissue Properties

机译:时间复用热疗到温度依赖性热组织特性的鲁棒性

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摘要

Microwave hyperthermia is a promising cancer treatment used in combination with radio- and chemotherapy. Typically, hyperthermia systems involve several antennas that transfer electromagnetic energy into the tissue. The principal need in hyperthermia treatment is to optimally focus the heating into the target while minimising heating in the surrounding healthy tissue. Patient-specific treatment planning is done to optimize the specific absorption rate and the resulting temperature distribution. Uncertainties associated with the thermal model used for temperature simulations represent an important challenge. Our previous work has demonstrated that the occurrence of hotspots can be reduced and target heating enhanced using time-multiplexed steering procedures. In this paper, the robustness of time-multiplexed hyperthermia against temperature dependent thermal tissue properties is investigated. Temperature simulations are used to predict the time-dependent heating achieved by multiple antenna phase and amplitude configurations that are generated by a multi-objective genetic algorithm and applied sequentially. The proposed strategy is compared with the heating obtained using one single heating setting obtained by particle swarm optimization as typically used in clinical hyperthermia. Thermal performance of the static and time-multiplexed methods are assessed by applying two thermal models, one that uses constant properties of blood perfusion and thermal conductivity of tumor, muscle and fat, and a second one that uses temperature dependent perfusion values. This study shows that time-multiplexed hyperthermia enhances target heating and limits the hotspot appearance regardless of the thermal model used in thermal simulations.
机译:微波热疗是一种有前途的癌症治疗,与无线电和化疗组合使用。通常,热疗系统涉及几种将电磁能转移到组织中的天线。热疗治疗的主要需要是最佳地将加热聚焦到目标中,同时最小化周围健康组织中的加热。患者特异性处理计划是为了优化特定的吸收率和所得温度分布。与用于温度模拟的热模型相关的不确定性代表了一个重要的挑战。我们以前的工作表明,使用时间多路复用的转向程序,可以减少热点的发生和目标加热。本文研究了对温度依赖性热组织特性的时间复用热疗的鲁棒性。温度模拟用于预测由多目标遗传算法产生的多天线相位和幅度配置实现的时间依赖性加热,并顺序地施加。将所提出的策略与使用通过颗粒群优化获得的单个加热设定获得的加热进行比较,如通常用于临床热疗。通过施加两个热模型来评估静态和时间复用方法的热性能,该热模型使用血液灌注和肿瘤,肌肉和脂肪的导热率的恒定性质,以及使用温度依赖性灌注值的第二个。该研究表明,时间复用的热疗增强了目标加热并限制了热点外观,而不管热模拟中使用的热模型如何。

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    Discipline of Electrical and Electronic Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

    Department of Radiation Oncology Section Hyperthermia Erasmus MC Cancer Institute Rotterdam GD The Netherlands;

    Department of Radiation Oncology Section Hyperthermia Erasmus MC Cancer Institute Rotterdam GD The Netherlands;

    Discipline of Electrical and Electronic Engineering College of Engineering & Informatics National University of Ireland Galway Galway Ireland;

    Discipline of Electrical and Electronic Engineering College of Engineering & Informatics National University of Ireland Galway Galway Ireland;

    Discipline of Electrical and Electronic Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

    Department of Radiation Oncology Section Hyperthermia Erasmus MC Cancer Institute Rotterdam GD The Netherlands;

    Discipline of Electrical and Electronic Engineering College of Engineering & Informatics National University of Ireland Galway Ireland;

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  • 正文语种 eng
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  • 关键词

    Hyperthermia; Tumors; Temperature dependence; Heating systems; Temperature distribution; Blood;

    机译:高温;肿瘤;温度依赖;加热系统;温度分布;血液;

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