Design and simulations of low cost and low magnetic field MRI system

S. Ghosh, Vikram Thakur, S. R. Chowdhury
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引用次数: 2

Abstract

The paper proposes the design of a low cost and low magnetic field MRI system. The idea behind the low cost and low magnetic field is that the system can be taken to and operated at remote locations suitably. The proposed design operates at a maximum field intensity of 0.2 T. The main magnetic field is proposed to be generated Helmholtz coils based on copper wires as a winding. The strength of gradient magnetic field has been at 75μT. The gradient has been generated using Maxwell coils and Saddle coils. Simulation study has been done where the radius of the Helmholtz coil has been kept at 30cm and the gradient coil has been kept at a radius of 25cm. The RF coil is designed with a radius of 20cm a the resonant frequency of 8.513MHz for 0.2T main magnetic field. Simulation studies performed with COMSOL Multiphysics 5.2 reveals homogeneity of main magnetic field within the coil. The homogeneity of magnetic field at the center of Helmholtz coil for one slice of volume has found to be ±1.2 percent.
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低成本低磁场核磁共振成像系统的设计与仿真
提出了一种低成本、低磁场的核磁共振成像系统的设计方案。低成本和低磁场背后的想法是,该系统可以被带到偏远地区并在适当的地方操作。所提出的设计工作在最大场强为0.2 t时,主磁场被提议产生基于铜线作为绕组的亥姆霍兹线圈。梯度磁场强度为75μT。梯度是用麦克斯韦线圈和鞍形线圈产生的。仿真研究中,亥姆霍兹线圈的半径保持在30cm,梯度线圈的半径保持在25cm。设计的射频线圈半径为20cm,谐振频率为8.513MHz,主磁场为0.2T。利用COMSOL Multiphysics 5.2进行的模拟研究揭示了线圈内主磁场的均匀性。亥姆霍兹线圈中心的磁场均匀性为±1.2%。
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