Imaging Science, Imaging Institute, Cleveland Clinic, Cleveland, OH, 44195, U.S.A.
Imaging Science, Imaging Institute, Cleveland Clinic, Cleveland, OH, 44195, U.S.A.
Neuroimage. 2022 Jul 1;254:119136. doi: 10.1016/j.neuroimage.2022.119136. Epub 2022 Mar 26.
Hemodynamic cardiac and respiratory-cycle fluctuations are a source of unwanted non-neuronal signal components, often called physiologic noise, in resting state (rs-) fMRI studies. Here, we use image-based retrospective correction of physiological motion (RETROICOR) with externally measured physiologic signals to investigate cardiac and respiratory hemodynamic phase functions reflected in rs-fMRI data. We find that the cardiac phase function is time shifted locally, while the respiratory phase function is described as single, fixed phase form across the brain. In light of these findings, we propose an update to Physiologic EStimation by Temporal ICA (PESTICA), our publically available software package that estimates physiologic signals when external physiologic measures are not available. This update incorporates: 1) auto-selection of slicewise physiologic regressors and generation of physiologic fixed phase regressors with total slices/TR sampling rate, 2) Fourier series expansion of the cardiac fixed phase regressor to account for time delayed cardiac noise 3) removal of cardiac and respiratory noise in imaging data. We compare the efficacy of the updated method to RETROICOR.
血流动力学心脏和呼吸周期波动是静息状态(rs-) fMRI 研究中不需要的非神经元信号成分的来源,通常称为生理噪声。在这里,我们使用基于图像的外部测量生理信号的生理运动(RETROICOR)的回顾性校正来研究 rs-fMRI 数据中反映的心脏和呼吸血流动力学相位函数。我们发现心脏相位函数在局部时间上发生偏移,而呼吸相位函数在整个大脑中被描述为单一的固定相位形式。鉴于这些发现,我们对我们的公共可用软件包 Physiologic EStimation by Temporal ICA (PESTICA) 进行了更新,当没有外部生理测量时,该软件包可以估计生理信号。此更新包括:1)自动选择切片生理回归器,并根据总切片/TR 采样率生成生理固定相位回归器,2)用傅立叶级数展开心脏固定相位回归器以解释延迟的心脏噪声,3)从成像数据中去除心脏和呼吸噪声。我们比较了更新方法与 RETROICOR 的效果。