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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >Calculation of the signal-to-noise ratio for simple surface coils and arrays of coils [magnetic resonance imaging]
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Calculation of the signal-to-noise ratio for simple surface coils and arrays of coils [magnetic resonance imaging]

机译:简单表面线圈和线圈阵列的信噪比计算[磁共振成像]

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Describes a new method to calculate the signal-to-noise ratio (SNR) of MR signals obtained from single receiver coils and arrays of receiver coils. The coils are assumed to be placed on the surface of a conducting half-space and the SNR is sample-noise dominated. While in conventional methods line integrals over the electric currents in the coils are chosen to calculate the electric and magnetic fields, this new method uses surface integrals over magnetic dipoles covering the area enclosed by the antenna to derive these fields. Using this method, the SNR for simple circular and square coils was analytically calculated. The calculations show that the theoretical difference in SNR between circular and square antennas is very low. Furthermore, based on the new method, a derivation of the ultimate gain in SNR for arrays of surface coils is presented. The SNR of such an array approaches a limit even if the total number of coils is increased to infinity. This ultimate SNR of a coil array is 35.8% above that of a single circular-shaped, size-optimized and linear polarized coil.
机译:描述一种计算从单个接收器线圈和接收器线圈阵列获得的MR信号的信噪比(SNR)的新方法。假定将线圈放置在导电半空间的表面上,并且SNR以样品噪声为主导。在传统方法中,选择线圈中电流上的线积分来计算电场和磁场,但是这种新方法使用覆盖天线包围区域的磁偶极子上的表面积分来得出这些场。使用这种方法,可以分析出简单的圆形和方形线圈的SNR。计算表明,圆形天线和方形天线之间的SNR的理论差异很小。此外,基于新方法,提出了表面线圈阵列的SNR最终增益的推导。即使线圈的总数增加到无穷大,这种阵列的SNR也接近极限。线圈阵列的最终SNR比单个圆形,尺寸优化和线性极化的线圈高出35.8%。

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