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在一个全新的重测数据集中模拟心脏和呼吸波动对中枢自主神经系统的影响。

Modelling the effect of cardiac and respiratory fluctuations on the central autonomic network in a novel test-retest dataset.

作者信息

Miedema Mary, Dagenais Rémi, Torabi Mohammad, Askarinejad S Emad, Long Siyu, Mitsis Georgios D

机构信息

Department of Bioengineering, McGill University, Canada; Graduate Program in Biological and Biomedical Engineering, McGill University, Canada.

Department of Bioengineering, McGill University, Canada; Graduate Program in Biological and Biomedical Engineering, McGill University, Canada.

出版信息

Neuroimage. 2025 Aug 15;317:121369. doi: 10.1016/j.neuroimage.2025.121369. Epub 2025 Jul 11.

DOI:10.1016/j.neuroimage.2025.121369
PMID:40653282
Abstract

Changes in physiological state corresponding to fluctuations in heart rate and respiration drive non-neuronal contributions to the BOLD fMRI signal, complicating investigation of regions of the brain which participate in and process autonomic regulation: the central autonomic network (CAN). The estimation of physiological response functions (PRFs) provides a tool to interrogate and minimize the effects of these noise processes on fMRI connectivity. In this study, we explore the reproducibility of cardiac and respiratory response functions used to denoise resting and task data acquired with 3T MRI and their effect on the test-retest reliability of connectivity within the CAN. We characterize group-level PRFs during rest, fast-paced breathing and breath-holds, and a cold-pressor task and show that cardiac response dynamics vary significantly across scan conditions and subjects. Comparing physiological nuisance signals with indices of sympathetic and parasympathetic activity used to map the CAN, we further demonstrate that PRFs may provide an opportunity to disentangle neuronal and non-neuronal correlates of cardiac activity in fMRI data. Finally, we evaluate the effect of denoising on the test-retest reliability of connectivity between regions associated with the CAN, shedding light on the uses and limitations of PRFs for fMRI studies of brain-body interactions.

摘要

与心率和呼吸波动相对应的生理状态变化驱动了对BOLD功能磁共振成像信号的非神经元贡献,这使得对参与和处理自主调节的脑区——中枢自主网络(CAN)的研究变得复杂。生理反应函数(PRF)的估计提供了一种工具,用于探究并最小化这些噪声过程对功能磁共振成像连接性的影响。在本研究中,我们探讨了用于对3T磁共振成像采集的静息和任务数据进行去噪的心脏和呼吸反应函数的可重复性,以及它们对CAN内连接性重测可靠性的影响。我们对静息、快节奏呼吸、屏气以及冷加压任务期间的组水平PRF进行了表征,并表明心脏反应动力学在不同扫描条件和受试者之间存在显著差异。将生理干扰信号与用于绘制CAN的交感神经和副交感神经活动指标进行比较,我们进一步证明PRF可能为在功能磁共振成像数据中区分心脏活动的神经元和非神经元相关性提供机会。最后,我们评估了去噪对与CAN相关区域之间连接性重测可靠性的影响,阐明了PRF在脑-体相互作用功能磁共振成像研究中的用途和局限性。

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