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Intra-coil interactions in split gradient coils in a hybrid MRI-LINAC system

机译:混合MRI-LINAC系统中分离梯度线圈中的线圈内相互作用

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An MRI-LINAC system combines a magnetic resonance imaging (MRI) system with a medical linear accelerator (LINAC) to provide image-guided radiotherapy for targeting tumors in real-time. In an MRI-LINAC system, a set of split gradient coils is employed to produce orthogonal gradient fields for spatial signal encoding. Owing to this unconventional gradient configuration, eddy currents induced by switching gradient coils on and off may be of particular concern. It is expected that strong intra-coil interactions in the set will be present due to the constrained return paths, leading to potential degradation of the gradient field linearity and image distortion. In this study, a series of gradient coils with different track widths have been designed and analyzed to investigate the electromagnetic interactions between coils in a split gradient set. A driving current, with frequencies from 100 Hz to 10 kHz, was applied to study the inductive coupling effects with respect to conductor geometry and operating frequency. It was found that the eddy currents induced in the un-energized coils (hereby-referred to as passive coils) positively correlated with track width and frequency. The magnetic field induced by the eddy currents in the passive coils with wide tracks was several times larger than that induced by eddy currents in the cold shield of cryostat. The power loss in the passive coils increased with the track width. Therefore, intra-coil interactions should be included in the coil design and analysis process. (C) 2016 Elsevier Inc. All rights reserved.
机译:MRI-LINAC系统将磁共振成像(MRI)系统与医用线性加速器(LINAC)结合在一起,以提供图像引导的放射疗法以实时靶向肿瘤。在MRI-LINAC系统中,采用一组分开的梯度线圈来产生用于空间信号编码的正交梯度场。由于这种非常规的梯度构造,由梯度线圈的接通和断开引起的涡电流可能是特别令人关注的。可以预料的是,由于返回路径的约束,该组中将存在强烈的线圈内相互作用,从而导致梯度场线性度和图像失真的潜在恶化。在这项研究中,已设计和分析了一系列具有不同磁道宽度的梯度线圈,以研究分离梯度集中的线圈之间的电磁相互作用。施加频率为100 Hz至10 kHz的驱动电流来研究关于导体几何形状和工作频率的电感耦合效应。已经发现,在未通电的线圈(在此称为无源线圈)中感应出的涡流与轨道宽度和频率成正相关。在宽磁道的无源线圈中由涡流感应的磁场比在低温恒温器冷罩中的涡流感应的磁场大几倍。无源线圈中的功率损耗随着走线宽度的增加而增加。因此,线圈设计和分析过程中应包括线圈内相互作用。 (C)2016 Elsevier Inc.保留所有权利。

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