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Design of invasive and non-invasive antennas for the combination of microwave-hyperthermia with radiation therapy

机译:微波热疗与放射治疗相结合的有创和无创天线设计

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Microwave hyperthermia is a method to elevate the temperature of the tissue. Combination of hyperthermia and radiation therapy can be very effective for treating cancer, because the temperature rise and dose by them may be able to be suppressed to optimized levels. In this paper, Invasive and non-invasive antennas for hyperthermia were designed, and an interstitial microwave antenna array hyperthermia system was used on a series of different phantoms to generate localized hyperthermia fields inside those phantoms. Coaxial-slot antenna is a minimally invasive antenna to generate radio frequency microwave field inside the phantoms. As a result of application of coaxial-slot antenna on different phantoms, energy absorption and temperature change occurs. In parallel, a non-invasive antenna - micro-strip patch antenna - was designed and applied on different phantoms. A critical parameter in any hyperthermia system is the Specific Absorption Rate (SAR), which gives information about the energy absorption in the different tissues. In this paper, the theoretical, measured and simulated values of SAR in different tissues have been compared. Both theory and experiment demonstrated that the maximum SAR occurred in the junction plane of antenna array. These experiments have been conducted using a frequency of 2.45GHz.
机译:微波热疗是一种升高组织温度的方法。热疗和放射疗法的结合可以非常有效地治疗癌症,因为可以将它们的温度升高和剂量抑制到最佳水平。在本文中,设计了用于热疗的有创和无创天线,并在一系列不同的体模上使用了间质微波天线阵列热疗系统,以在这些体模内生成局部热疗场。同轴槽天线是一种微创天线,用于在幻像内部产生射频微波场。由于在不同的体模上使用同轴缝隙天线,会发生能量吸收和温度变化。同时,设计了一种非侵入性天线-微带贴片天线-并将其应用于不同的体模。任何高热系统中的一个关键参数是比吸收率(SAR),它可提供有关不同组织中能量吸收的信息。在本文中,比较了不同组织中SAR的理论值,测量值和模拟值。理论和实验均表明最大SAR发生在天线阵列的结平面上。这些实验是使用2.45GHz的频率进行的。

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