Radboud University and Radboud University Medical Center, Donders Institute for Neuroscience, Netherlands; Univ Rennes, CHU Rennes, Comportement et Noyaux Gris Centraux-EA 4712, F-35000, Rennes, France.
Lyon Neuroscience Research Center (CRNL), Brain Dynamics and Cognition Team, INSERM U1028, CNRS UMR5292, Université Claude Bernard Lyon 1, UdL, Lyon, France.
Neuroimage. 2020 Feb 15;207:116340. doi: 10.1016/j.neuroimage.2019.116340. Epub 2019 Nov 7.
Neural oscillations are thought to provide a cyclic time frame for orchestrating brain computations. Following this assumption, midfrontal theta oscillations have recently been proposed to temporally organize brain computations during conflict processing. Using a multivariate analysis approach, we show that brain-behavior relationships during conflict tasks are modulated according to the phase of ongoing endogenous midfrontal theta oscillations recorded by scalp EEG. We found reproducible results in two independent datasets, using two different conflict tasks: brain-behavior relationships (correlation between reaction time and theta power) were theta phase-dependent in a subject-specific manner, and these "behaviorally optimal" theta phases were also associated with fronto-parietal cross-frequency dynamics emerging as theta phase-locked beta power bursts. These effects were present regardless of the strength of conflict. Thus, these results provide empirical evidence that midfrontal theta oscillations are involved in cyclically orchestrating brain computations likely related to response execution during the tasks rather than purely related to conflict processing. More generally, this study supports the hypothesis that phase-based computation is an important mechanism giving rise to cognitive processing.
神经振荡被认为为大脑计算提供了一个循环的时间框架。基于这一假设,最近有人提出,前额θ振荡在冲突处理过程中暂时组织大脑计算。使用多元分析方法,我们表明,在冲突任务期间,脑-行为关系根据头皮 EEG 记录的正在进行的内源性前额θ振荡的相位进行调节。我们在两个独立的数据集上使用两种不同的冲突任务得到了可重复的结果:脑-行为关系(反应时间和θ功率之间的相关性)以特定于个体的方式依赖于θ相位,并且这些“行为最优”θ相位也与额顶叶跨频动力学相关联,表现为与θ相位锁定的β功率爆发。这些效应与冲突的强度无关。因此,这些结果提供了经验证据,表明前额θ振荡参与周期性地协调大脑计算,这可能与任务期间的反应执行有关,而不仅仅与冲突处理有关。更一般地说,这项研究支持了相位计算是产生认知处理的重要机制的假设。