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Unique heating curves generated by radiofrequency electric-field interactions with semi-aqueous solutions

机译:射频电场与半水溶液相互作用产生的独特加热曲线

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摘要

Aqueous and nanoparticle-based solutions have been reported to heat when exposed to an alternating radiofrequency (RF) electric-field. Although the theoretical models have been developed to accurately model such a behavior given the solution composition as well as the geometrical constraints of the sample holder, these models have not been investigated across a wide-range of solutions where the dielectric properties differ, especially with regard to the real permittivity. In this work, we investigate the RF heating properties of non-aqueous solutions composed of ethanol, propylene glycol, and glycine betaine with and without varying amounts of NaCl and LiCl. This allowed us to modulate the real permittivity across the range 25–132, as well as the imaginary permittivity across the range 37–177. Our results are in excellent agreement with the previously developed theoretical models. We have shown that different materials generate unique RF heating curves that differ from the standard aqueous heating curves. The theoretical model previously described is robust and accounts for the RF heating behavior of materials with a variety of dielectric properties, which may provide applications in non-invasive RF cancer hyperthermia.
机译:据报道,当暴露于交替的射频(RF)电场时,水性和基于纳米粒子的溶液会发热。尽管已经开发了理论模型来精确地模拟给定溶液成分和样品架几何形状约束条件下的这种行为,但尚未针对介电特性不同的宽范围溶液进行研究,特别是对于到真正的介电常数。在这项工作中,我们研究了由乙醇,丙二醇和甘氨酸甜菜碱组成的非水溶液在有和没有变化的NaCl和LiCl的情况下的射频加热特性。这使我们能够在25-132范围内调制实际介电常数,并在37-177范围内调制虚拟介电常数。我们的结果与以前开发的理论模型非常吻合。我们已经表明,不同的材料会产生与标准水性加热曲线不同的独特RF加热曲线。先前描述的理论模型是可靠的,并且考虑到具有各种介电特性的材料的RF加热行为,这可能会在非侵入性RF癌症热疗中提供应用。

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