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Online motion correction for diffusion-weighted imaging using navigator echoes: Application to RARE imaging without sensitivity loss

机译:使用导航回波进行扩散加权成像的在线运动校正:在没有灵敏度损失的情况下应用于RaRE成像

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摘要

This article describes the first application of true online motion correction to diffusion-weighted RARE imaging. Two orthogonal navigator echoes were acquired and zeroth and first-order phase corrections applied in less than 8 ms between a diffusion-weighted magnetization preparation and data acquisition using the RARE sequence. The zeroth-order phase correction was realized by pulsing the system's B(0)-coil: the first-order error corrected with appropriate magnetic field gradient pulses. Online correction ensured that no irreversible signal loss could occur in the imaging experiment. Diffusion-weighted images of the brain were obtained from healthy volunteers. EGG-triggered acquisition was applied at 400 ms after the R-wave. Data were acquired on a matrix of 256 x 256 with a RARE factor of 16 and a b-value of 804 smm(-2). The images obtained with online motion correction showed a remarkably high image quality, while those acquired without motion correction were severely degraded by artifacts.
机译:本文介绍了真正的在线运动校正在扩散加权RARE成像中的首次应用。采集了两个正交导航回波,并且在扩散加权磁化准备和使用RARE序列的数据采集之间,在不到8 ms的时间内进行了零阶和一阶相位校正。零阶相位校正是通过对系统的B(0)线圈施加脉冲来实现的:用适当的磁场梯度脉冲校正了一阶误差。在线校正确保在成像实验中不会发生不可逆的信号损失。大脑的扩散加权图像是从健康志愿者那里获得的。在R波后400毫秒应用EGG触发的采集。在256 x 256的矩阵上获取数据,其RARE因子为16,b值为804 smm(-2)。通过在线运动校正获得的图像显示出非常高的图像质量,而未经运动校正获得的图像则因伪影而严重劣化。

著录项

  • 作者

    Norris, D.; Driesel, W.;

  • 作者单位
  • 年度 2001
  • 总页数
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类

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