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Investigation of Magnetic Field Gradient Waveforms in the Presence of a Metallic Vessel in Magnetic Resonance Imaging Through Simulation

机译:通过仿真研究金属容器存在下金属磁场中的磁场梯度波形

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摘要

We have previously established the ability to characterize eddy currents and their impact on the magnetic fields in metal vessel magnetic resonance imaging applications through comparison with measured data. We now use simulation to investigate the spatiotemporal characteristics of eddy currents and their magnetic fields encountered in metal vessel magnetic resonance imaging that may not easily be experimentally verified. Simulations using CST EM Studio have revealed the impact of an offset in the positioning of the metal vessel in a superconducting magnet bore as well as the consequences of the different amplitude magnetic gradients employed during imaging experiments. Furthermore, we investigate the response of the metal vessel to magnetic field gradients generated from nonplanar and planar gradient coil geometries (encountered in superconducting and permanent magnet-based systems). Establishing the basic electromagnetic properties of the metal vessel in a magnetic resonance sense through simulation permits us to replace our simple metal vessel with a more sophisticated rock core holder design and investigate its properties.
机译:我们先前已经建立了通过与测量数据进行比较来表征涡流及其对金属容器磁共振成像应用中磁场的影响的能力。现在,我们使用模拟来研究涡流及其在金属容器磁共振成像中遇到的磁场的时空特性,这些特性可能很难通过实验进行验证。使用CST EM Studio进行的仿真显示了金属容器在超导磁体孔中的位置偏移的影响,以及在成像实验过程中采用不同幅度的磁梯度的后果。此外,我们研究了金属容器对非平面和平面梯度线圈几何形状(在超导和基于永磁体的系统中遇到)产生的磁场梯度的响应。通过仿真在磁共振意义上确定金属容器的基本电磁性能,使我们可以用更复杂的岩心支架设计替换我们简单的金属容器,并研究其性能。

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