Camenzind Magdalena, Steuri Rahel A, Savic Branislav, Mast Fred W, Müri René M, Eberhard-Moscicka Aleksandra K
Perception and Eye Movement Laboratory, Departments of Neurology and BioMedical Research, University Hospital Inselspital, University of Bern, Bern, Switzerland.
Graduate School for Health Sciences (GHS).
Netw Neurosci. 2025 Apr 30;9(2):569-590. doi: 10.1162/netn_a_00446. eCollection 2025.
Random noise stimulation (tRNS) applied to the dorsolateral prefrontal cortex (DLPFC) enhances fluency and originality in verbal divergent thinking tasks. However, the underlying neural mechanisms of this behavioral change remain unclear. Given that the DLPFC is a key node of the executive control network (ECN) and that creativity is a two-stage process in which the ECN is primarily involved in the final idea selection stage, application of tRNS to this region shall not only result in an increase of originality and flexibility but also in a modulation of EEG activity. To test these assumptions, we collected 256-channel EEG of 40 participants before and after tRNS/sham applied to the DLPFC, during which participants performed two verbal creativity tasks. To assess stimulation-induced connectivity changes and to capture large-scale cortical communication, a source space alpha (8-12 Hz) imaginary coherence was calculated. We found that the tRNS-induced improvements in originality and flexibility were associated with bilateral DLPFC alpha coherence changes. From a large-scale networks perspective, these results suggest that tRNS-induced ECN activity is associated with increased originality and flexibility, potentially by enhancing selectivity in the idea evaluation phase. This study, for the first time, indicates a link between neurophysiological activity and tRNS-induced changes in verbal creativity.
将随机噪声刺激(tRNS)应用于背外侧前额叶皮层(DLPFC)可提高言语发散性思维任务中的流畅性和创造性。然而,这种行为变化背后的神经机制仍不清楚。鉴于DLPFC是执行控制网络(ECN)的关键节点,且创造力是一个两阶段过程,其中ECN主要参与最终想法选择阶段,将tRNS应用于该区域不仅会导致创造性和灵活性的提高,还会调节脑电图活动。为了验证这些假设,我们在对40名参与者的DLPFC施加tRNS/假刺激前后收集了256通道脑电图,在此期间参与者执行了两项言语创造力任务。为了评估刺激引起的连接性变化并捕捉大规模皮层通信,计算了源空间阿尔法(8 - 12赫兹)虚相干性。我们发现,tRNS引起的创造性和灵活性的提高与双侧DLPFC阿尔法相干性变化有关。从大规模网络的角度来看,这些结果表明,tRNS引起的ECN活动与创造性和灵活性的提高有关,可能是通过增强想法评估阶段的选择性来实现的。本研究首次表明了神经生理活动与tRNS引起的言语创造力变化之间的联系。