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Heat Equation Inversion Framework for Average SAR Calculation From Magnetic Resonance Thermal Imaging

机译:磁共振热成像计算平均比吸收率的热方程反演框架

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摘要

Deposition of radiofrequency (RF) energy can be quantified via electric field or temperature change measurements. Magnetic resonance imaging has been used as a tool to measure three dimensional small temperature changes associated with RF radiation exposure. When duration of RF exposure is long, conversion from temperature change to specific absorption rate (SAR) is nontrivial due to prominent heat-diffusion and conduction effects. In this work, we demonstrated a method for calculation of SAR via an inversion of the heat equation including heat-diffusion and conduction effects. This method utilizes high-resolution three dimensional magnetic resonance temperature images and measured thermal properties of the phantom to achieve accurate calculation of SAR. Accuracy of the proposed method was analyzed with respect to operating frequency of a dipole antenna and parameters used in heat equation inversion.
机译:可以通过电场或温度变化测量来量化射频(RF)能量的沉积。磁共振成像已被用作测量与RF辐射暴露相关的三维微小温度变化的工具。当RF暴露的时间较长时,由于突出的热扩散和传导效应,从温度变化到特定吸收率(SAR)的转换是不平凡的。在这项工作中,我们展示了一种通过热方程的反演来计算SAR的方法,该方程包括热扩散和传导效应。该方法利用高分辨率的三维磁共振温度图像和测得的体模的热特性来实现SAR的精确计算。针对偶极子天线的工作频率和热方程反演中使用的参数,分析了该方法的准确性。

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