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Reducing ghosting due to k-space discontinuities in fast spin echo (FSE) imaging by a new combination of k-space ordering and parallel imaging

机译:通过k空间有序化和并行成像的新组合减少快速自旋回波(FSE)成像中k空间不连续性引起的重影

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摘要

In multi-echo imaging sequences like fast spin echo (FSE), the point spread function (PSF) in the phase encoding direction contains significant secondary peaks (sidebands). This is due to discontinuities in adjacent k-space data obtained at different echo times caused by T2 decay, and leads to ghosting and hence reduced image quality. Recently, utilising multiple coils for signal reception has become the standard configuration for MR systems due to the additional flexibility that parallel imaging (PI) methods can provide. PI methods generally obtain more data than is required to reconstruct an image. Here, this redundancy in information is exploited to reduce discontinuity-related ghosting in FSE imaging. Adjacent phase encoded k-space lines are acquired at different echo times alternately in the regions of discontinuity (called ‘feathering’). This moves the resulting ghost artefacts to the edges of the field of view. This property of the ghost then makes them amenable to removal using PI methods. With ‘feathered’ array coil data it is possible to reconstruct data over the region of the discontinuity from both echo times. By combining this data, a significant reduction in ghosting can be achieved. We show this approach to be effective through simulated and acquired MRI data.
机译:在诸如快速自旋​​回波(FSE)的多回波成像序列中,相位编码方向上的点扩展函数(PSF)包含重要的次要峰(边带)。这是由于T2衰减导致在不同回波时间获得的相邻k空间数据中的不连续性,并导致重影并因此降低了图像质量。最近,由于并行成像(PI)方法可以提供额外的灵活性,因此利用多个线圈进行信号接收已成为MR系统的标准配置。 PI方法通常获得比重建图像所需更多的数据。在此,利用这种信息冗余来减少FSE成像中与不连续性有关的重影。在不连续区域(称为“羽化”)中,在不同的回波时间交替获取相邻相位编码的k空间线。这会将产生的幻影伪像移到视野的边缘。然后,虚影的此属性使它们适合使用PI方法删除。利用“羽化”阵列线圈数据,可以根据两个回波时间在不连续区域重建数据。通过组合这些数据,可以显着减少重影。我们显示这种方法通过模拟和获取的MRI数据是有效的。

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