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Fast and Efficient Birdcage Coil Design Process for High Field MRI System by Combining Equivalent Circuit Model and 3D Electromagnetic Simulation

机译:等效电路模型与3D电磁仿真相结合的高场MRI系统快速有效的鸟笼线圈设计过程

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摘要

A novel method has been established to mitigate the complexity of a birdcage coil design process for use in a MRI (Magnetic Resonance Imaging) system. It can reduce the time consumptions of the typical coil design process based on 3D (three-dimensional) simulations. The method combines an equivalent circuit model and a 3D electromagnetic simulation. It makes it possible to understand the coil properties intuitively and to solve the major engineering problems by using just the circuit model not by using the complex 3D simulation. The concept of the dominant resonance path length of the coil has also been introduced, which facilitates the design process by considering the skin effect of the coil. We have verified that the skin effect of the birdcage coil can be evaluated through a simple circular loop circuit instead of the whole 3D geometry. Base on the design proposed method, we also have successfully demonstrated that the birdcage coil based on a FPCB (Flexible Printed Circuit board) technique can be used in high filed (3.0 T and 4.7 T) MRI systems for small animal NMR (Nuclear Magnetic Resonance) imaging.
机译:已经建立了一种新颖的方法来减轻用于MRI(磁共振成像)系统的鸟笼线圈设计过程的复杂性。它可以减少基于3D(三维)仿真的典型线圈设计过程的时间消耗。该方法结合了等效电路模型和3D电磁仿真。这样就可以直观地了解线圈的特性,并通过仅使用电路模型而不是使用复杂的3D仿真来解决主要的工程问题。还引入了线圈的主要谐振路径长度的概念,这通过考虑线圈的趋肤效应来简化设计过程。我们已经验证了可以通过简单的环形回路而不是整个3D几何来评估鸟笼线圈的集肤效应。基于设计提出的方法,我们还成功地证明了基于FPCB(柔性印刷电路板)技术的鸟笼线圈可用于小动物NMR(核磁共振)的高场(3.0 T和4.7 T)MRI系统中)成像。

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