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Enhanced phase regression with Savitzky-Golay filtering for high-resolution BOLD fMRI

机译:利用Savitzky-Golay滤波增强相位回归以实现高分辨率BOLD fMRI

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摘要

Phase regression exploits the temporal evolution of phase in individual voxels to suppress blood oxygenation level dependent (BOLD) signal fluctuations caused by larger vessels and draining veins while preserving signal changes from microvascular effects. However, this process does not perform well when phase time series have low signal-to-noise ratios because of high levels of physiological noise. We demonstrate that Savitzky-Golay filters may be used to recover the underlying change in phase and completely restore the efficacy of phase regression. We do not make a priori assumptions regarding phase evolution and perform a data-driven exploration of parameter space to select the Savitzky-Golay filter parameters that minimize temporal variance in each voxel after phase regression. This approach is shown to work well on data acquired with single-shot and multi-shot pulse sequences, and should therefore be useful for both human and animal gradient-echo fMRI at high spatial resolutions at high fields. The ability to improve the spatial specificity of BOLD activation may be especially advantageous for clinical applications of fMRI that rely upon the accuracy of individual subject's activation maps to assist with presurgical planning and clinical decision-making. Enhanced phase regression with Savitzky-Golay filtering may also find other uses in analyses of resting state functional connectivity.
机译:相位回归利用各个体素中相位的时间演变来抑制由较大血管和引流静脉引起的血液氧合水平依赖性(BOLD)信号波动,同时保留微血管效应引起的信号变化。但是,由于高水平的生理噪声,当相位时间序列具有较低的信噪比时,此过程效果不佳。我们证明,Savitzky-Golay滤波器可用于恢复相位的根本变化并完全恢复相位回归的功效。我们不对相位演化进行先验假设,而是对参数空间进行数据驱动的探索,以选择Savitzky-Golay滤波器参数,以最小化相位回归后每个体素的时间差异。该方法在单次和多次脉冲序列采集的数据上显示出良好的效果,因此对于高场高空间分辨率的人和动物梯度回波功能磁共振成像都应是有用的。改善BOLD激活的空间特异性的能力对于fMRI的临床应用尤其有利,因为fMRI依赖于个体受试者的激活图的准确性来协助进行术前计划和临床决策。具有Savitzky-Golay滤波功能的增强型相位回归还可以在静态状态功能连通性分析中找到其他用途。

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