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首页> 外文期刊>Journal of Electromagnetic Waves and Applications >Investigation on improved water-loaded diagonal horn applicators for hyperthermia
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Investigation on improved water-loaded diagonal horn applicators for hyperthermia

机译:改进的水力对角热敷器的研究

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This paper describes simulation, theoretical, and/or experimental studies of specific absorption rate (SAR) distribution in biological phantom (muscle)/tri-layered bio-media without and with irregular-shaped tumors in direct contact with improved water-loaded metal diagonal horns designed at 2450 and 915MHz. Further, thermal simulation results based on Pennes' bio-heat equation are also provided for each of the proposed applicators, which is in direct contact with realistic tri-layered bio-media without and with irregular-shaped tumor embedded within the muscle layer. The proposed horns are improved versions of the respective conventional metal diagonal horns in which the aperture fields, which are modified by introducing four conducting pins at appropriate locations near each antenna aperture, correspond to fundamental and higher order modes. The theoretical aperture field distributions of the proposed horns designed at 2450 and 915MHz are compared with the corresponding simulated ones. Further, the theoretical SAR parameters (penetration depth (PD) and effective field size (EFS)) in the phantom muscle medium due to the proposed horns designed at 2450 and 915MHz are compared with the corresponding simulated and/or experimental results as well as with those obtained due to the corresponding conventional horns of identical dimensions. Moreover, effects on PD, EFS/EFS25, and temperature distribution profiles due to presence of irregular-shaped tumor in the tri-layered bio-media at 2450 and 915MHz are also investigated. It is demonstrated that desired temperature range 41-45 degrees C can be achieved and maintained for 60min with input power of 4/10W at the frequencies of 2450/915MHz for treating superficial tumors.
机译:本文描述了在模拟体(肌肉)/三层生物介质中,不带有和不规则形状的肿瘤直接接触改进的载水金属对角线的生物模型(肌肉)/三层生物介质中比吸收率(SAR)分布的模拟,理论和/或实验研究喇叭设计为2450和915MHz。此外,还为每个拟议的施药器提供了基于Pennes生物热方程式的热模拟结果,该施药器与现实的三层生物介质直接接触,而没有或不规则形状的肿瘤嵌入肌肉层内。所提出的号筒是相应的常规金属对角号筒的改进版本,其中通过在每个天线孔附近的适当位置处引入四个导电销而修改的孔场对应于基本和更高阶模式。将设计在2450和915MHz处设计的号筒的理论孔径场分布与相应的模拟号筒进行了比较。此外,将在2450和915MHz设计的号角所引起的幻象肌肉介质中的理论SAR参数(穿透深度(PD)和有效场大小(EFS))与相应的模拟和/或实验结果以及由于具有相同尺寸的相应常规喇叭而获得的那些。此外,还研究了由于三层生物介质在2450和915MHz下存在不规则形状的肿瘤而对PD,EFS / EFS25和温度分布曲线的影响。结果表明,在治疗浅表性肿瘤的频率为2450 / 915MHz的情况下,以4 / 10W的输入功率可以实现41-45摄氏度的理想温度范围并保持60分钟。

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