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首页> 外文期刊>NeuroImage >Improving robustness and reliability of phase-sensitive fMRI analysis using temporal off-resonance alignment of single-echo timeseries (TOAST).
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Improving robustness and reliability of phase-sensitive fMRI analysis using temporal off-resonance alignment of single-echo timeseries (TOAST).

机译:使用单回波时间序列(TOAST)的时间非共振对齐提高相敏fMRI分析的鲁棒性和可靠性。

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摘要

Echo Planar Imaging (EPI), often utilized in functional MRI (fMRI) experiments, is well known for its vulnerability to inconsistencies in the static magnetic field (B(0)). Correction for these field inhomogeneities usually involves measuring the magnetic field at a single time point, and using this static information to correct a series of images collected over the course of one or multiple experiments. However, common phenomena, such as respiration and motion, change the characteristics of the B(0) field homogeneity in a time-dependent and often unpredictable manner, rendering previous field measurements invalid. The effects of these changes are particularly large in the image phase, due to its direct and sensitive relationship to the magnetic field, and methods utilizing complex information can suffer enormously. This dependence can be exploited to estimate the temporal dynamics of the B(0) field. Use of this information to correct fMRI data can provide more effective motion correction, reduce temporal noise, fMRI data analysis. All of the necessary information is embedded in complex EPI images, and results indicate this is a robust way to improve the quality of fMRI data, especially when used with complex analysis.
机译:经常在功能性MRI(fMRI)实验中使用的回波平面成像(EPI)以其易受静态磁场不一致的影响而闻名(B(0))。对这些磁场不均匀性的校正通常涉及在单个时间点测量磁场,并使用此静态信息校正在一个或多个实验过程中收集的一系列图像。但是,常见的现象(例如呼吸和运动)以时间相关且通常不可预测的方式改变B(0)场均匀性的特性,从而使先前的场测量无效。由于这些变化与磁场的直接和敏感关系,因此它们在图像相位上的影响特别大,利用复杂信息的方法可能会遭受巨大损失。可以利用这种依赖性来估计B(0)字段的时间动态。使用此信息校正fMRI数据可以提供更有效的运动校正,减少时间噪声,fMRI数据分析。所有必要的信息都嵌入到复杂的EPI图像中,结果表明这是提高fMRI数据质量的可靠方法,尤其是与复杂分析一起使用时。

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