Department of Psychology, Michigan State University, United States of America.
Department of Electrical and Computer Engineering, Michigan State University, United States of America.
Int J Psychophysiol. 2024 Mar;197:112299. doi: 10.1016/j.ijpsycho.2024.112299. Epub 2024 Jan 10.
Cognitive control-related error monitoring is intimately involved in behavioral adaptation, learning, and individual differences in a variety of psychological traits and disorders. Accumulating evidence suggests that a focus on women's health and ovarian hormones is critical to the study of such cognitive brain functions. Here we sought to identify a novel index of error monitoring using a time-frequency based phase amplitude coupling (t-f PAC) measure and examine its modulation by endogenous levels of estradiol in females. Forty-three healthy, naturally cycling young adult females completed a flanker task while continuous electroencephalogram was recorded on four occasions across the menstrual cycle. Results revealed significant error-related t-f PAC between theta phase generated in fronto-central areas and gamma amplitude generated in parietal-occipital areas. Moreover, this error-related theta-gamma coupling was enhanced by endogenous levels of estradiol both within females across the cycle as well as between females with higher levels of average circulating estradiol. While the role of frontal midline theta in error processing is well documented, this paper extends the extant literature by illustrating that error monitoring involves the coordination between multiple distributed systems with the slow midline theta activity modulating the power of gamma-band oscillatory activity in parietal regions. They further show enhancement of inter-regional coupling by endogenous estradiol levels, consistent with research indicating modulation of cognitive control neural functions by the endocrine system in females. Together, this work identifies a novel neurophysiological marker of cognitive control-related error monitoring in females that has implications for neuroscience and women's health.
认知控制相关的错误监控与行为适应、学习以及各种心理特征和障碍中的个体差异密切相关。越来越多的证据表明,关注女性健康和卵巢激素对于研究这种认知大脑功能至关重要。在这里,我们试图使用基于时频的相位振幅耦合(t-fPAC)测量来确定一种新的错误监控指标,并研究其在内源性雌二醇水平对女性的调制作用。43 名健康、自然循环的年轻成年女性在月经周期的四个不同时间点完成了一项侧抑制任务,同时连续记录了脑电图。结果显示,在前额中央区域产生的θ相位和顶枕区域产生的γ振幅之间存在显著的错误相关 t-fPAC。此外,这种错误相关的θ-γ耦合在内源性雌二醇水平上既受到女性个体在周期内的影响,也受到平均循环雌二醇水平较高的女性之间的影响。虽然额叶中线θ在错误处理中的作用已有充分的记录,但本文通过说明错误监控涉及多个分布式系统的协调,中线θ活动的缓慢调节顶叶区域γ波段振荡活动的功率,扩展了现有文献。他们进一步展示了内源性雌二醇水平增强了区域间的耦合,这与研究表明内分泌系统对女性认知控制神经功能的调制一致。总之,这项工作确定了女性认知控制相关错误监控的一种新的神经生理标记,这对神经科学和女性健康具有重要意义。