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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Evaluation of magnetohydrodynamic effects in magnetic resonance electrical impedance tomography at ultra‐high magnetic fields
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Evaluation of magnetohydrodynamic effects in magnetic resonance electrical impedance tomography at ultra‐high magnetic fields

机译:超高磁场磁共振电阻断层扫描中磁性流体动力学效应的评价

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Purpose Artifacts observed in experimental magnetic resonance electrical impedance tomography images were hypothesized to be because of magnetohydrodynamic (MHD) effects. Theory and Methods Simulations of MREIT acquisition in the presence of MHD and electrical current flow were performed to confirm findings. Laminar flow and (electrostatic) electrical conduction equations were bidirectionally coupled via Lorentz force equations, and finite element simulations were performed to predict flow velocity as a function of time. Gradient sequences used in spin‐echo and gradient echo acquisitions were used to calculate overall effects on MR phase images for different electrical current application or phase‐encoding directions. Results Calculated and experimental phase images agreed relatively well, both qualitatively and quantitatively, with some exceptions. Refocusing pulses in spin echo sequences did not appear to affect experimental phase images. Conclusion MHD effects were confirmed as the cause of observed experimental phase changes in MREIT images obtained at high fields. These findings may have implications for quantitative measurement of viscosity using MRI techniques. Methods developed here may be also important in studies of safety and in vivo artifacts observed in high field MRI systems.
机译:在实验磁共振电阻断层扫描图像中观察到的目的伪像被假设为因磁性流学动力学(MHD)效应而受到假设。在MHD存在下,对MHD和电流流动存在的抗突肌肉采集的理论和方法进行了证实。层流和(静电)电导电方程通过Lorentz力方程双向耦合,并且执行有限元模拟以预测流速作为时间的函数。用于旋转回波和梯度回波采集中使用的梯度序列用于计算对不同电流施加或相位编码方向的MR相位图像的整体影响。结果计算和实验相位图像同意相对良好,定性和定量,有一些例外。旋转回波序列中的重新焦脉冲似乎没有影响实验相位图像。结论确认MHD效应是在高田地获得的观察到实验相变的原因。这些发现可能对使用MRI技术进行定量测量粘度的影响。这里开发的方法在高场MRI系统中观察到的安全性和体内伪影中也可能是重要的。

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