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体外研究中的毫米波加热:连续和脉冲调制模式下对流的影响。

Millimeter-Wave Heating in In Vitro Studies: Effect of Convection in Continuous and Pulse-Modulated Regimes.

作者信息

Orlacchio Rosa, Zhadobov Maxim, Alekseev Stanislav I, Nikolayev Denys, Sauleau Ronan, Le Page Yann, Le Dréan Yves

机构信息

CNRS, IETR (Institut d'Electronique et de Télécommunication de Rennes)-UMR 6164, University of Rennes, Rennes, France.

CNRS, XLIM, UMR 7252, University of Limoges, Limoges, France.

出版信息

Bioelectromagnetics. 2019 Dec;40(8):553-568. doi: 10.1002/bem.22223. Epub 2019 Oct 3.

Abstract

Shallow penetration of millimeter waves (MMW) and non-uniform illumination in in vitro experiments result in a non-uniform distribution of the specific absorption rate (SAR). These SAR gradients trigger convective currents in liquids affecting transient and steady-state temperature distributions. We analyzed the effect of convection on temperature dynamics during MMW exposure in continuous-wave (CW) and pulsed-wave (PW) amplitude-modulated regimes using micro-thermocouples. Temperature rise kinetics are characterized by the occurrence of a temperature peak that shifts to shorter times as the SAR of the MMW exposure increases and precedes initiation of convection in bulk. Furthermore, we demonstrate that the liquid volume impacts convection. Increasing the volume results in earlier triggering of convection and in a greater cooling rate after the end of the exposure. In PW regimes, convection strongly depends on the pulse duration that affects the heat pulse amplitude and cooling rate. The latter results in a change of the average temperature in PW regime. Bioelectromagnetics. 2019;40:553-568. © 2019 Bioelectromagnetics Society.

摘要

毫米波(MMW)在体外实验中的穿透较浅且光照不均匀,导致比吸收率(SAR)分布不均。这些SAR梯度会引发液体中的对流,影响瞬态和稳态温度分布。我们使用微型热电偶分析了连续波(CW)和脉冲波(PW)调幅模式下毫米波暴露期间对流对温度动态的影响。升温动力学的特征是出现一个温度峰值,该峰值随着毫米波暴露的SAR增加而向更短的时间偏移,并且在主体对流开始之前出现。此外,我们证明液体体积会影响对流。增加体积会导致对流更早触发,并且在暴露结束后冷却速率更高。在PW模式下,对流强烈依赖于影响热脉冲幅度和冷却速率的脉冲持续时间。后者导致PW模式下平均温度发生变化。《生物电磁学》。2019年;40:553 - 568。© 2019生物电磁学会。

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