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关于多个射频线圈的噪声相关矩阵。

On the noise correlation matrix for multiple radio frequency coils.

作者信息

Brown Ryan, Wang Yi, Spincemaille Pascal, Lee Ray F

机构信息

Department of Radiology, Weill Medical College of Cornell University, New York, New York 10022, USA.

出版信息

Magn Reson Med. 2007 Aug;58(2):218-24. doi: 10.1002/mrm.21324.

Abstract

Noise correlation between multiple receiver coils is discussed using principles of statistical physics. Using the general fluctuation-dissipation theorem we derive the prototypic correlation formula originally determined by Redpath (Magn Res Med 1992;24:85-89), which states that correlation of current spectral noise depends on the real part of the inverse impedance matrix at a given frequency. A distinct correlation formula is also derived using the canonical partition function, which states that correlation of total current noise over the entire frequency spectrum depends on the inverse inductance matrix. The Kramers-Kronig relation is used to equate the inverse inductance matrix to the spectral integral of the inverse impedance matrix, implying that the total noise is equal to the summation of the spectral noise over the entire frequency spectrum. Previous conflicting arguments on noise correlation may be reconciled by differentiating between spectral and total noise correlation. These theoretical derivations are verified experimentally using two-coil arrays.

摘要

运用统计物理原理讨论了多个接收线圈之间的噪声相关性。利用广义涨落耗散定理,我们推导出了最初由雷德帕斯确定的原型相关公式(《磁共振医学》,1992年;24:85 - 89),该公式表明电流频谱噪声的相关性取决于给定频率下逆阻抗矩阵的实部。还使用正则配分函数推导出了一个不同的相关公式,该公式表明整个频谱上总电流噪声的相关性取决于逆电感矩阵。克莱默斯 - 克朗尼格关系用于使逆电感矩阵等于逆阻抗矩阵的频谱积分,这意味着总噪声等于整个频谱上频谱噪声的总和。之前关于噪声相关性的相互矛盾的论点可以通过区分频谱噪声相关性和总噪声相关性来调和。这些理论推导通过双线圈阵列进行了实验验证。

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