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Hybridized eigenmodes of periodic wire arrays and their application in radiofrequency coils for preclinical MRI

机译:周期线阵列的混合本征模式及其在临床MRI射频线圈中的应用

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In this contribution we discuss the application of periodic structures composed of resonant metal strips in radio-frequency coils for preclinical multi-nuclei magnetic resonance imaging (MRI). For these multi-wire structures we numerically demonstrate a variety of hybridized eigenmodes calculating their magnetic field patterns and discuss their selective excitation. We show that by properly exciting two particular eigenmodes with a small non-resonant loop feed one can construct a dual-frequency coil for MRI. The field of view of the coil at both frequencies is determined by the magnetic field patterns of the selected modes, as shown by full-wave numerical simulations. The choice of the excited eigenmodes determines the field penetration depths into a scanned subject at the corresponding resonant frequencies. Moreover, in this work we discuss miniaturization of multi-wire resonators by capacitive loading of strips.
机译:在本文中,我们讨论了由共振金属带组成的周期性结构在射频线圈中的临床前多核磁共振成像(MRI)应用。对于这些多线结构,我们以数值方式证明了各种杂化本征模式,它们计算了它们的磁场模式并讨论了它们的选择性激发。我们表明,通过用小的非谐振环路馈电适当地激励两个特定的本征模式,可以构造出用于MRI的双频线圈。如全波数值模拟所示,两种频率下线圈的视场由所选模式的磁场模式确定。激发本征模式的选择确定了在相应的共振频率下进入扫描对象的场穿透深度。此外,在这项工作中,我们讨论了通过条带的电容性负载实现的多线谐振器的小型化。

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