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Online motion correction for diffusion-weighted segmented-EPI and FLASH imaging

机译:扩散加权分段EpI和FLasH成像的在线运动校正

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摘要

This paper explores the application of online motion correction using navigator echoes to the segmented-EPI and FLASH techniques. In segmented EPI this has the advantage over post-acquisition correction that the position in k-space of each segment is no longer subject to arbitrary shifts caused by rotation. In diffusion-weighted FLASH it has the advantage that the full magnetisation can be utilised in comparison to other methods of eliminating the sensitivity to bulk motion, in which the sensitivity is halved. Healthy subjects were investigated on a 3 T whole-body system in which the hardware has been modified so that navigator echoes can be recorded on a personal computer which generates the necessary magnetic field gradient correction pulses and shifts in the Larmor frequency within 800 μs. ECG triggering was used to avoid the period of non-rigid-body brain motion. Two orthogonal navigator echoes were employed. For segmented EPI it was found essential to minimise the T2* weighting of the navigator echoes to about 10 ms to obtain reliable results. High quality images were obtained for both methods examined. Online motion correction brings direct benefits to both the diffusion-weighted segmented-EPI and FLASH techniques.
机译:本文探讨了使用导航回波的在线运动校正在分段EPI和FLASH技术中的应用。在分段EPI中,这比获取后校正具有优势,即每个分段在k空间中的位置不再受旋转引起的任意移位。在扩散加权的闪存中,与其他消除对体积运动敏感度的方法相比,该方法具有充分的磁化的优势,在其他方法中,灵敏度降低了一半。在3 T全身系统上对健康的受试者进行了研究,其中对硬件进行了修改,以便可以将导航仪回波记录在个人计算机上,该计算机生成必要的磁场梯度校正脉冲并在800μs内拉莫尔频率发生偏移。心电图触发用于避免非刚性脑部运动。使用了两个正交的导航回波。对于分段的EPI,发现将导航回波的T2 *权重最小化到大约10毫秒以获得可靠的结果至关重要。两种检查方法均获得了高质量的图像。在线运动校正为扩散加权分段EPI和FLASH技术带来直接好处。

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