Gärtner Matti, Grimm Simone, Bajbouj Malek
Affective Neuroscience and Emotion Modulation, Department of Education and Psychology, Freie Universität Berlin Berlin, Germany ; Department of Psychiatry, Charité, Campus Benjamin Franklin Berlin, Germany.
Affective Neuroscience and Emotion Modulation, Department of Education and Psychology, Freie Universität Berlin Berlin, Germany ; Department of Psychiatry, Charité, Campus Benjamin Franklin Berlin, Germany ; Department of Psychiatry, Psychotherapy and Psychosomatics, University of Zurich Zurich, Switzerland.
Front Behav Neurosci. 2015 Apr 20;9:96. doi: 10.3389/fnbeh.2015.00096. eCollection 2015.
Complex cognitive tasks such as mental arithmetic heavily rely on intact, well-coordinated prefrontal cortex (PFC) function. Converging evidence suggests that frontal midline theta (FMT) oscillations play an important role during the execution of such PFC-dependent tasks. Additionally, it is well-established that acute stress impairs PFC function, and recent evidence suggests that FMT is decreased under stress. In this EEG study, we investigated FMT oscillations during a mental arithmetic task that was carried out in a stressful and a neutral control condition. Our results show late-onset, sustained FMT increases during mental arithmetic. In the neutral condition FMT started to increase earlier than in the stress condition. Direct comparison of the conditions quantified this difference by showing stronger FMT increases in the neutral condition in an early time window. Between-subject correlation analysis showed that attenuated FMT under stress was related to slowed reaction times. Our results suggest that FMT is associated with stimulus independent mental processes during the natural and complex PFC-dependent task of mental arithmetic, and is a possible marker for intact PFC function that is disrupted under stress.
诸如心算之类的复杂认知任务严重依赖于完整且协调良好的前额叶皮层(PFC)功能。越来越多的证据表明,额中线θ(FMT)振荡在执行此类依赖PFC的任务过程中发挥着重要作用。此外,众所周知,急性应激会损害PFC功能,并且最近的证据表明,应激状态下FMT会降低。在这项脑电图研究中,我们调查了在应激和中性对照条件下进行心算任务期间的FMT振荡情况。我们的结果显示,心算过程中FMT出现延迟且持续增加。在中性条件下,FMT比在应激条件下更早开始增加。通过直接比较两种条件发现,在早期时间窗口中,中性条件下FMT的增加更为强烈,从而量化了这种差异。受试者间相关性分析表明,应激状态下FMT减弱与反应时间延长有关。我们的结果表明,在自然且复杂的依赖PFC的心算任务中,FMT与独立于刺激的心理过程相关,并且可能是应激状态下被破坏的完整PFC功能的一个标志物。