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首页> 外文期刊>Physics in medicine and biology. >Comparison of simulated and experimental results from helical antennas within a muscle-equivalent phantom.
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Comparison of simulated and experimental results from helical antennas within a muscle-equivalent phantom.

机译:等效于肌肉的幻像中的螺旋天线的模拟和实验结果的比较。

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Miniature microwave helical antennas for use in thermal therapy applications are usually investigated using muscle-equivalent phantoms. In this paper, an alternative method using an electromagnetic solver based on the finite integration technique is used to simulate a range of 915 MHz helical antennas within a medium with the dielectric properties of muscle. By avoiding the stair-casing effect associated with many solvers, this method enables accurate simulations of non-orthogonal geometric objects such as helical antennas to be achieved. The effects of coil-spacing and insertion depth on the SAR distribution produced by the antennas were characterized and showed good agreement with previously published results obtained using a muscle phantom and a thermographic camera. The simulations confirm that the performance of helical antennas depends on insertion depth. Modification of the coil density demonstrated improvement of the return loss characteristics and changes to the resulting SAR profile.
机译:通常使用肌肉等效体模来研究用于热疗应用的微型微波螺旋天线。在本文中,使用一种基于有限积分技术的电磁求解器的替代方法,用于模拟具有肌肉介电特性的介质中的915 MHz螺旋天线范围。通过避免与许多求解器相关的楼梯套管效应,该方法可以实现对非正交几何对象(例如螺旋天线)的精确仿真。表征了线圈间距和插入深度对天线产生的SAR分布的影响,并与先前使用肌肉体模和热像仪获得的结果显示出很好的一致性。仿真结果证实了螺旋天线的性能取决于插入深度。线圈密度的改变证明了回波损耗特性的改善以及所得到的SAR曲线的变化。

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