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Optimization of magnetic flux density for fast MREIT conductivity imaging using multi-echo interleaved partial fourier acquisitions

机译:使用多回波交错式部分傅里叶采集来优化MREIT电导率成像的磁通密度

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摘要

BackgroundMagnetic resonance electrical impedance tomography (MREIT) has been introduced as a non-invasive method for visualizing the internal conductivity and/or current density of an electrically conductive object by externally injected currents. The injected current through a pair of surface electrodes induces a magnetic flux density distribution inside the imaging object, which results in additional magnetic flux density. To measure the magnetic flux density signal in MREIT, the phase difference approach in an interleaved encoding scheme cancels out the systematic artifacts accumulated in phase signals and also reduces the random noise effect by doubling the measured magnetic flux density signal. For practical applications of in vivo MREIT, it is essential to reduce the scan duration maintaining spatial-resolution and sufficient contrast. In this paper, we optimize the magnetic flux density by using a fast gradient multi-echo MR pulse sequence. To recover the one component of magnetic flux density Bz, we use a coupled partial Fourier acquisitions in the interleaved sense.
机译:背景技术磁共振电阻抗断层成像(MREIT)作为一种非侵入性方法已被引入,用于通过外部注入的电流可视化导电物体的内部导电率和/或电流密度。通过一对表面电极注入的电流在成像对象内部感应出磁通量密度分布,从而导致额外的磁通量密度。为了在MREIT中测量磁通量密度信号,交错编码方案中的相差方法消除了相位信号中积累的系统伪像,并通过将测得的磁通量密度信号加倍来减少随机噪声影响。对于体内MREIT的实际应用,必须减少扫描时间,以保持空间分辨率和足够的对比度。在本文中,我们通过使用快速梯度多回波MR脉冲序列来优化磁通密度。为了恢复磁通密度Bz的一个分量,我们在交错意义上使用耦合的部分傅里叶采集。

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