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首页> 外文期刊>IEEE Transactions on Biomedical Engineering >The signal-to-noise ratio of nuclear magnetic resonance surface coils and application to a lossy dielectric cylinder model. I. Theory
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The signal-to-noise ratio of nuclear magnetic resonance surface coils and application to a lossy dielectric cylinder model. I. Theory

机译:核磁共振表面线圈的信噪比及其在有损介质圆柱模型中的应用。一,理论

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Surface coils are used in magnetic resonance imaging (MRI) for their high signal-to-noise ratio (S/N) when placed near the-region to be imaged. However, their optimization for high field MRI systems is hampered by the lack of understanding of the electromagnetic effects taking place at high frequencies when a coil is placed near the human body. The aim of this work was to calculate the S/N of surface coils using complete solutions to Maxwell's equations and also to study the high frequency effects and parameters determining the S/N. Here the authors present a general approach to the computation of the S/N of surface coils using the reciprocity principal and the complex Poynting vector for arbitrary coil and body geometries. This approach is then applied to the case of the human body modeled as an infinitely long homogeneous dielectric cylinder exhibiting both conductive and dielectric losses. The S/N of a coil of unspecified geometry facing the cylinder is derived using a dyadic Green's function. Complete solutions for the fields of a dipolar source arbitrarily located in the cylinder are first derived, and applying the reciprocity principle, the authors deduce the fields created at the dipole position by a coil excited with a unit radiofrequency current. These yield the expressions for the power dissipated in the cylinder, for its reciprocal the noise picked up by the coil, and also for the signal received. Any coil geometry and any coil or source position can be evaluated with this infinite cylinder model. It is valid at all frequencies and for any tissue parameter. The general approach to the computation of the S/N of MRI coils can be applied to other body geometries as well.
机译:当表面线圈放置在要成像的区域附近时,由于其高的信噪比(S / N)而用于磁共振成像(MRI)。然而,由于缺乏对将线圈放置在人体附近时在高频下发生的电磁效应的了解,因此妨碍了它们对高场MRI系统的优化。这项工作的目的是使用麦克斯韦方程组的完整解来计算表面线圈的信噪比,并研究高频效应和确定信噪比的参数。在这里,作者介绍了一种通用方法,该方法使用互惠性原理和复Poynting矢量对任意线圈和主体几何体计算表面线圈的S / N。然后将该方法应用于建模为无限长的均质电介质圆柱体的情况,该圆柱体同时显示出导电损耗和介电损耗。面对圆柱体的未指定几何形状的线圈的S / N使用二进力格林函数得出。首先推导任意位于圆柱体中的偶极子源场的完整解,并应用互易原理,推论由单位射频电流激励的线圈在偶极子位置产生的场。这些给出了气缸中耗散的功率,线圈所吸收的噪声的倒数以及接收到的信号的表达式。可以使用此无限圆柱模型评估任何线圈几何形状以及任何线圈或电源位置。在所有频率和任何组织参数下均有效。 MRI线圈信噪比的通用计算方法也可以应用于其他人体几何形状。

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