Department of Biomedical Engineering, Vanderbilt University, Nashville, TN, 37235, USA.
Vanderbilt University Institute of Imaging Science, Nashville, TN, 37232, USA.
Sci Rep. 2019 Jun 20;9(1):8871. doi: 10.1038/s41598-019-45404-8.
Correlations between fluctuations in resting state BOLD fMRI signals are interpreted as measures of functional connectivity (FC), but the neural basis of their origins and their relationships to specific features of underlying electrophysiologic activity, have not been fully established. In particular, the dependence of FC metrics on different frequency bands of local field potentials (LFPs), and the relationship of dynamic changes in BOLD FC to underlying temporal variations of LFP correlations, are not known. We compared the spatial profiles of resting state coherences of different frequency bands of LFP signals, with high resolution resting state BOLD FC measurements. We also compared the probability distributions of temporal variations of connectivity in both modalities using a Markov chain model-based approach. We analyzed data obtained from the primary somatosensory (S1) cortex of monkeys. We found that in areas 3b and 1 of S1 cortex, low frequency LFP signal fluctuations were the main contributions to resting state LFP coherence. Additionally, the dynamic changes of BOLD FC behaved most similarly to the LFP low frequency signal coherence. These results indicate that, within the S1 cortex meso-scale circuit studied, resting state FC measures from BOLD fMRI mainly reflect contributions from low frequency LFP signals and their dynamic changes.
静息状态功能磁共振成像(fMRI)的 BOLD 信号波动的相关性被解释为功能连接(FC)的测量指标,但它们的起源的神经基础及其与潜在电生理活动的特定特征的关系尚未完全建立。特别是,FC 指标对局部场电位(LFP)不同频带的依赖性,以及 BOLD FC 动态变化与 LFP 相关性的潜在时间变化之间的关系尚不清楚。我们将不同频带的 LFP 信号静息状态相干性的空间分布与高分辨率静息状态 BOLD FC 测量进行了比较。我们还使用基于马尔可夫链模型的方法比较了两种模式中连接的时间变化的概率分布。我们分析了从猴子的初级体感皮层(S1)获得的数据。我们发现,在 S1 皮层的 3b 和 1 区,低频 LFP 信号波动是静息状态 LFP 相干性的主要贡献者。此外,BOLD FC 的动态变化与 LFP 低频信号相干性最为相似。这些结果表明,在所研究的 S1 皮层中尺度电路中,BOLD fMRI 的静息状态 FC 测量主要反映了低频 LFP 信号及其动态变化的贡献。