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首页> 外文期刊>Journal of magnetic resonance imaging: JMRI >Spatial resolution of numerical models of man and calculated specific absorption rate using the FDTD method: A study at 64 MHz in a magnetic resonance imaging coil.
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Spatial resolution of numerical models of man and calculated specific absorption rate using the FDTD method: A study at 64 MHz in a magnetic resonance imaging coil.

机译:人的数值模型的空间分辨率和使用FDTD方法计算的比吸收率:在磁共振成像线圈中以64 MHz进行的研究。

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摘要

PURPOSE: To examine how fine a model resolution is necessary for calculation of specific energy absorption rate (SAR) for the human head in regions as small as 1 g. MATERIALS AND METHODS: Here we perform a simple study comparing the maximum SAR averaged over any 1 cm(3) and SAR averaged over the entire head for several models of the same human head within the same radiofrequency coil, but with spatial resolutions varying from 8-100 Yee cells per cm(3). RESULTS: Over the range of model resolutions from 8-100 Yee cells per cm(3), there is only a 16% variation in maximum SAR in any 1 cm(3) of tissue in the head, and only a 7% variation in SAR averaged over the entire head. CONCLUSION: While it is always desirable to perform SAR calculations with the greatest possible accuracy, in calculations of the maximum SAR levels in any 1 cm(3) of tissue, spatial resolutions greater than 5 mm may not yield notably different results than those with a spatial resolution of 5 mm. J. Magn. Reson. Imaging 2003;18:383-388.
机译:目的:研究在小至1 g的区域中计算人头的比能量吸收率(SAR)时需要多大的模型分辨率。材料和方法:在这里,我们进行了一项简单的研究,比较了同一射频线圈内同一人体头部的多个模型在任何1 cm(3)上平均的最大SAR和在整个头部上的平均SAR,但空间分辨率为8每厘米-100 Yee格(3)。结果:在模型分辨率范围内,从每厘米8-100个Yee细胞(3),头部任何1 cm(3)组织的最大SAR仅有16%的变化,而在7%的组织中只有7%的变化。 SAR在整个头部平均。结论:尽管总是希望以尽可能最大的精度执行SAR计算,但是在计算任意1 cm(3)组织中的最大SAR值时,大于5 mm的空间分辨率可能不会产生与使用SAR的结果明显不同的结果。 5毫米的空间分辨率。 J.Magn。雷森成像2003; 18:383-388。

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