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Zero and first order phase shift correction for field map estimation with dual-echo GRE using bipolar gradients

机译:用于双回波GRE的双极性梯度的场图估计的零阶和一阶相移校正

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摘要

A simple phase error correction technique used for field map estimation with a generally available dual-echo GRE sequence is presented. Magnetic field inhomogeneity maps estimated using two separate GRE volume acquisitions at different echo times are prone to dynamic motion errors between acquisitions. By using the dual-echo sequence the data are collected during two back-to-back readout gradients in opposite polarity after a single RF pulse, and inter-echo motion artifacts and alignment errors in field map estimation can be factored out. Residual phase error from the asymmetric readout pulses is modeled as an affine term in the readout direction. Results from phantom and human data suggest that the first order phase correction term stays constant over time and, hence, can be applied to different data acquired with the same protocol over time. The zero order phase correction term may change with time and is estimated empirically for different scans.
机译:提出了一种简单的相位误差校正技术,该技术用于具有普遍可用的双回波GRE序列的场图估计。在不同的回波时间使用两个单独的GRE体积采集估算的磁场不均匀性图在采集之间容易产生动态运动误差。通过使用双回波序列,在单个RF脉冲之后,以相反的极性在两个背对背的读出梯度期间收集数据,并且可以排除回波间运动伪影和场图估计中的对准误差。来自非对称读出脉冲的残余相位误差被建模为沿读出方向的仿射项。来自幻象和人类数据的结果表明,一阶相位校正项随时间保持不变,因此可以随时间应用于使用同一协议获取的不同数据。零阶相位校正项可能随时间变化,并根据经验针对不同的扫描进行估计。

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