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Power deposition patterns of interstitial microwave hyperthermia applicators having tapered dielectric sheaths

机译:具有锥形介电护套的间隙微波热疗器的功率沉积模式

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A coaxial dipole inserted into a cylindrical dielectric sheath is widely used as an interstitial microwave hyperthermia applicator. A means is described here of controlling the current distribution along the dipole and consequently controlling the distribution of the radiated power density by tapering the outside diameter of the dielectric sheath. Numerical results have been obtained for nylon catheters having three different cross-sections using the theory of linear, insulated antennas embedded in electrically dense media. The inner diameter of the dielectric sheath is the same in the three cases and is equal to the diameter of the conductor. The outer diameter is uniform in case 1, linearly tapered in case 2 and nonlinearly tapered in case 3. Numerical results were obtained at a frequency of 915 MHz, assuming a relative permittivity in the ambient medium of (51–j31), which is typical of tissue having a high water content. The tapers were selected such that the resonant length was the same in the three cases. It was found that the power density close to the tip of the applicator was increased considerably through the use of a linearly tapered sheath, with further improvement being obtained using the nonlinear taper.
机译:插入圆柱状介电护套中的同轴偶极子被广泛用作间隙微波热疗器。这里描述了一种控制沿着偶极子的电流分布并因此通过使电介质护套的外径变细来控制辐射功率密度的分布的装置。利用嵌入在电致密介质中的线性绝缘天线的理论,已经获得了具有三个不同横截面的尼龙导管的数值结果。在三种情况下,电介质护套的内径相同,并且等于导体的直径。外径在情况1下是均匀的,在情况2下是线性渐缩,在情况3下是非线性渐缩,假设在环境介质中的相对介电常数为(51–j31),这是在915 MHz频率下获得的数值结果。含水量高的组织。选择锥形使得在三种情况下谐振长度相同。已经发现,通过使用线性渐缩的护套,靠近涂药器尖端的功率密度显着增加,并且使用非线性锥度获得了进一步的改善。

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