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Simulation and analysis of split gradient coil performance in MRI

机译:MRI中分裂梯度线圈性能的仿真与分析

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Split magnet systems for hybrid imaging, such as positron emission tomography-magnetic resonance imaging (PET-MRI) and Radiotherapy-MRI, require gradient coils designed with similar shapes as their corresponding main magnet. This introduces challenges in the gradient coil design of good performance and manufacturing. In this paper the effect of the gap size in shielded transverse split gradient coils and split cryostat “warm” bore over the coil efficiency, shielding efficiency, wire spacing, cryostat ohmic power loss and mechanical vibration have been simulated and studied. A “free-surface” gradient coil design method was used to design the split, actively-shielded transverse gradient coils with an axial gap. A network method was used to calculate the eddy currents induced in the split cryostat “warm” bore. The shielding efficiency and the minimum wire spacing were found to decrease when the size of the central gap is increased. The ohmic power loss and the amplitude of the radial vibrations in the split cryostat “warm” bore increases when the gap size in the gradient coil and “warm” bore is increased. It is hoped that these investigations will be useful for the development of new hybrid imaging modalities involving MRI.
机译:用于混合成像的分割磁体系统,例如正电子发射断层摄影 - 磁共振成像(PET-MRI)和放射疗法-MRI,需要具有与其相应的主磁体相似的形状类似的梯度线圈。这引入了良好性能和制造的梯度线圈设计中的挑战。在本文中,间隙尺寸在屏蔽横向分开梯度线圈中的影响并在线圈效率下分离低温恒温器“温暖”孔,屏蔽效率,电线间距,低温恒温欧姆功率损失和机械振动已经进行了模拟和研究。 “自由表面”梯度线圈设计方法用于设计具有轴向间隙的分割,主动屏蔽的横向梯度线圈。使用网络方法来计算分离低温恒温器“温暖”孔中诱导的涡流。当中央间隙的尺寸增加时,发现屏蔽效率和最小线间距变得降低。当梯度线圈和“温热”孔中的间隙尺寸增加时,分离低温恒温器“温热”孔中的欧姆功率损失和径向振动的幅度增加。希望这些调查对于开发涉及MRI的新的混合成像方式是有用的。

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