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Distortion correction of echo planar images applying the concept of finite rate of innovation to point spread function mapping (FRIP)

机译:回声平面图像的失真校正应用有限速率概念对点扩散函数映射(FRIP)

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摘要

Objective Point spread function (PSF) mapping enables estimating the displacement fields required for distortion correction of echo planar images. Recently, a highly accelerated approach was introduced for estimating displacements from the phase slope of under-sampled PSF mapping data. Sampling schemes with varying spacing were proposed requiring stepwise phase unwrapping. To avoid unwrapping errors, an alternative approach applying the concept of finite rate of innovation to PSF mapping (FRIP) is introduced, using a pattern search strategy to locate the PSF peak, and the two methods are compared. Materials and methods Fully sampled PSF data was acquired in six subjects at 3.0 T, and distortion maps were estimated after retrospective under-sampling. The two methods were compared for both previously published and newly optimized sampling patterns. Prospectively under-sampled data were also acquired. Shift maps were estimated and deviations relative to the fully sampled reference map were calculated. Results The best performance was achieved when using FRIP with a previously proposed sampling scheme. The two methods were comparable for the remaining schemes. The displacement field errors tended to be lower as the number of samples or their spacing increased. Conclusion A robust method for estimating the position of the PSF peak has been introduced.
机译:目标点扩散功能(PSF)映射使得能够估计回波平面图像失真校正所需的位移场。最近,引入了一种高加速的方法,用于估计来自采样的PSF映射数据的阶段坡度的位移。提出了具有变化间距的采样方案,需要逐步逐步展开。为避免展开误差,使用模式搜索策略来定位PSF峰值的替代方法,以定位PSF峰值,将概念应用于PSF映射(FRIP)。材料和方法在3.0 T的六个受试者中获取完全采样的PSF数据,并在抽样后估计失真映射。比较这两种方法,以便以前发表的和新优化的采样模式进行了比较。还获得了预先取样的数据。估计移位映射并计算相对于完全采样的参考图的偏差。结果使用先前提出的采样方案使用FRIP时,实现了最佳性能。这两种方法对剩余方案相当。随着样品的数量或其间距增加,位移场误差趋于较低。结论已经介绍了一种鲁棒方法,用于估计PSF峰的位置。

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