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New head models extracted from thermal infrared (IR) images for dosimetry computations

机译:从热红外(IR)图像中提取的新头部模型用于剂量计算

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摘要

In electromagnetic dosimetry, anatomical human models are commonly obtained by segmentation of magnetic resonance imaging or computed tomography scans. In this paper, a human head model extracted from thermal infrared images is examined in terms of its applicability to specific absorption rate (SAR) calculations. Since thermal scans are two-dimensional (2D) representation of surface temperature, this allows researchers to overcome the extensive computational demand associated with 3D simulation. The numerical calculations are performed using the finite-difference time-domain method with mesh sizes of 2 mm at 900 MHz plane wave irradiation. The power density of the incident plane wave is assumed to be 10W/m~2. Computations were compared with a realistic anatomical head model. The results show that although there were marked differences in the local SAR distribution in the various tissues in the two models, the 1 g peak SAR values are approximately similar in the two models.
机译:在电磁剂量测定中,解剖人体模型通常是通过磁共振成像或计算机断层扫描扫描的分段获得的。本文研究了从红外热像中提取的人头模型对特定吸收率(SAR)计算的适用性。由于热扫描是表面温度的二维(2D)表示,因此研究人员可以克服与3D模拟相关的大量计算需求。数值计算是使用时域有限差分法,在900 MHz平面波辐照下,网格尺寸为2 mm。假设入射平面波的功率密度为10W / m〜2。计算与现实的解剖头模型进行了比较。结果表明,尽管两个模型中各个组织的局部SAR分布存在明显差异,但两个模型中的1 g峰值SAR值大致相似。

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