Department of Radiology, Tri-Service General Hospital, National Defense Medical Center, Taipei, Taiwan.
Department of Radiology, Wan Fang Hospital, Taipei Medical University, Taipei, Taiwan.
Neuroimage. 2024 Apr 1;289:120535. doi: 10.1016/j.neuroimage.2024.120535. Epub 2024 Feb 9.
Neurovascular coupling serves as an essential neurophysiological mechanism in functional neuroimaging, which is generally presumed to be robust and invariant across different physiological states, encompassing both task engagement and resting state. Nevertheless, emerging evidence suggests that neurovascular coupling may exhibit state dependency, even in normal human participants. To investigate this premise, we analyzed the cross-frequency spectral correspondence between concurrently recorded electroencephalography (EEG) and functional magnetic resonance imaging (fMRI) data, utilizing them as proxies for neurovascular coupling during the two conditions: an eye-open-eye-close (EOEC) task and a resting state. We hypothesized that given the state dependency of neurovascular coupling, EEG-fMRI spectral correspondences would change between the two conditions in the visual system. During the EOEC task, we observed a negative phase-amplitude-coupling (PAC) between EEG alpha-band and fMRI visual activity. Conversely, in the resting state, a pronounced amplitude-amplitude-coupling (AAC) emerged between EEG and fMRI signals, as evidenced by the spectral correspondence between the EEG gamma-band of the midline occipital channel (O) and the high-frequency fMRI signals (0.15-0.25 Hz) in the visual network. This study reveals distinct scenarios of EEG-fMRI spectral correspondence in healthy participants, corroborating the state-dependent nature of neurovascular coupling.
神经血管耦合是功能神经影像学中的一种重要神经生理机制,通常被认为在不同的生理状态下都是稳健且不变的,包括任务参与和静息状态。然而,新出现的证据表明,神经血管耦合可能表现出状态依赖性,即使在正常的人类参与者中也是如此。为了研究这一前提,我们分析了同时记录的脑电图 (EEG) 和功能磁共振成像 (fMRI) 数据之间的跨频光谱对应关系,将它们作为两种情况下神经血管耦合的代理:睁眼-闭眼 (EOEC) 任务和静息状态。我们假设,鉴于神经血管耦合的状态依赖性,EEG-fMRI 光谱对应关系在两种情况下的视觉系统中会发生变化。在 EOEC 任务中,我们观察到 EEG 阿尔法波段和 fMRI 视觉活动之间存在负相位-振幅耦合 (PAC)。相反,在静息状态下,EEG 和 fMRI 信号之间出现了明显的振幅-振幅耦合 (AAC),这可以通过中线枕部通道 (O) 的 EEG 伽马波段和视觉网络中高频 fMRI 信号 (0.15-0.25 Hz) 之间的光谱对应关系来证明。这项研究揭示了健康参与者中 EEG-fMRI 光谱对应关系的不同情况,证实了神经血管耦合的状态依赖性。