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Dependence of B1+ and B1− Field Patterns of Surface Coils on the Electrical Properties of the Sample and the MR Operating Frequency

机译:表面线圈的B1 +和B1-场模式对样品电性能和MR工作频率的依赖性

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摘要

In high field MRI, the spatial distribution of the radiofrequency magnetic (>B1) field is usually affected by the presence of the sample. For hardware design and to aid interpretation of experimental results, it is important both to anticipate and to accurately simulate the behavior of these fields. Fields generated by a radiofrequency surface coil were simulated using dyadic Green’s functions, or experimentally measured over a range of frequencies inside an object whose electrical properties were varied to illustrate a variety of transmit (B1+) and receive (B1) field patterns. In this work, we examine how changes in polarization of the field and interference of propagating waves in an object can affect the >B1 spatial distribution. Results are explained conceptually using Maxwell’s equations and intuitive illustrations. We demonstrate that the electrical conductivity alters the spatial distribution of distinct polarized components of the field, causing “twisted” transmit and receive field patterns, and asymmetries between |B1+| and |B1|. Additionally, interference patterns due to wavelength effects are observed at high field in samples with high relative permittivity and near-zero conductivity, but are not present in lossy samples due to the attenuation of propagating EM fields. This work provides a conceptual framework for understanding >B1 spatial distributions for surface coils and can provide guidance for RF engineers.
机译:在高场MRI中,射频磁场(> B 1)的空间分布通常受样品的存在影响。对于硬件设计和帮助解释实验结果,重要的是预见并准确模拟这些字段的行为。射频表面线圈产生的场是使用格林(Dyadic Green)函数进行模拟的,或者是通过对物体内部的一定频率范围内的频率进行实验测量的,这些物体的电特性发生了变化,从而说明了多种发射方式。 .org / 1998 / Math / MathML“ id =” M3“ overflow =” scroll“> B 1 + 并接收 B 1 < mo>- 字段模式。在这项工作中,我们研究了场极化的变化和物体中传播波的干扰如何影响> B 1空间分布。使用麦克斯韦方程和直观的图示从概念上解释结果。我们证明了电导率会改变磁场的不同极化分量的空间分布,从而导致“扭曲”的发射和接收磁场模式以及 | B 1 + | | B 1 - | 。另外,在高相对介电常数和接近零电导率的样品中,在高场处观察到由于波长效应引起的干涉图,但由于传播的EM场的衰减,在有损样品中不存在干涉图。这项工作为理解表面线圈的> B 1空间分布提供了概念框架,并且可以为RF工程师提供指导。

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