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首页> 外文期刊>Magnetic resonance in medicine: official journal of the Society of Magnetic Resonance in Medicine >Single shot fast spin echo diffusion imaging with correction for non-linear phase errors using tailored RF pulses
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Single shot fast spin echo diffusion imaging with correction for non-linear phase errors using tailored RF pulses

机译:单次快速自旋回波扩散成像,使用定制的RF脉冲校正非线性相位误差

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Purpose The use of tailored RF excitation pulses for prospective correction of non-linear motion-induced phase patterns is shown to enable diffusion-weighted (DW) fast spin echo (FSE) imaging in vivo. Echo-planar imaging (EPI) remains the most used sequence for DW imaging. Despite being highly sensitive to field inhomogeneities, EPI is robust to motion-induced phase shifts. FSE sequences are much less sensitive to field inhomogeneities, but require precise control of the transverse magnetization phase, which is hard to achieve with DW. Real time measurements and correction of phase ramps due to rigid-body motion had been proposed, but performance remained unsatisfactory because of non-linear phase patterns related to pulsatile motion. Methods Reproducible non-linear phase components are calibrated using 2D-EPI navigators and tailored RF excitation pulses designed. Real time correction of rigid-body motion was not yet implemented. Results Phase correction was confirmed with full signal DW-FSE images obtained on co-operative subjects. Full diffusion tensor acquisitions were obtained and color-coded maps displaying principal fiber directionality calculated. Results were consistent with corresponding EPI acquisitions except for absence of spatial distortions. Conclusion Combining the proposed method with real time compensation of rigid-body motion has the potential to allow high quality, distortion free diffusion imaging throughout the brain.
机译:目的显示了使用定制的RF激励脉冲对非线性运动引起的相位模式进行前瞻性校正,可以在体内进行扩散加权(DW)快速自旋回波(FSE)成像。平面回波成像(EPI)仍然是DW成像最常用的序列。尽管EPI对场的不均匀性非常敏感,但它对运动引起的相移具有鲁棒性。 FSE序列对磁场不均匀性的敏感度要低得多,但需要精确控制横向磁化相位,而DW很难实现。已经提出了由于刚体运动引起的相位斜坡的实时测量和校正,但是由于与脉动运动有关的非线性相位模式,性能仍然不能令人满意。方法使用2D-EPI导航仪和定制的RF激励脉冲校准可再现的非线性相位分量。刚体运动的实时校正尚未实现。结果用在合作对象上获得的全信号DW-FSE图像确认了相位校正。获得全扩散张量,并计算出显示主要纤维方向性的彩色编码图。除了没有空间失真外,结果与相应的EPI采集一致。结论将所提出的方法与刚体运动的实时补偿相结合,有可能在整个大脑中实现高质量,无畸变的扩散成像。

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