Dipartimento di Ingegneria dell'Informazione, University of Pisa, Pisa, Italy.
Research Center 'E. Piaggio', School of Engineering, University of Pisa, Pisa, Italy.
J Neural Eng. 2024 Feb 9;21(1). doi: 10.1088/1741-2552/ad2403.
. This study presents a novel methodological approach for incorporating information related to the peripheral sympathetic response into the investigation of neural dynamics. Particularly, we explore how hedonic contextual olfactory stimuli influence the processing of neutral faces in terms of sympathetic response, event-related potentials and effective connectivity analysis. The objective is to investigate how the emotional valence of odors influences the cortical connectivity underlying face processing and the role of face-induced sympathetic arousal in this visual-olfactory multimodal integration.. To this aim, we combine electrodermal activity (EDA) analysis and dynamic causal modeling to examine changes in cortico-cortical interactions.. The results reveal that stimuli arising sympathetic EDA responses are associated with a more negative N170 amplitude, which may be a marker of heightened arousal in response to faces. Hedonic odors, on the other hand, lead to a more negative N1 component and a reduced the vertex positive potential when they are unpleasant or pleasant. Concerning connectivity, unpleasant odors strengthen the forward connection from the inferior temporal gyrus (ITG) to the middle temporal gyrus, which is involved in processing changeable facial features. Conversely, the occurrence of sympathetic responses after a stimulus is correlated with an inhibition of this same connection and an enhancement of the backward connection from ITG to the fusiform face gyrus.. These findings suggest that unpleasant odors may enhance the interpretation of emotional expressions and mental states, while faces capable of eliciting sympathetic arousal prioritize identity processing.
. 本研究提出了一种新的方法学方法,将与外周交感反应相关的信息纳入神经动力学研究中。特别是,我们探索了愉悦性情境嗅觉刺激如何影响中性面孔的处理,从交感反应、事件相关电位和有效连通性分析的角度来看。目的是研究气味的情绪效价如何影响面孔处理的皮质连通性,以及面孔引起的交感唤醒在这种视觉-嗅觉多模态整合中的作用。. 为此,我们结合皮肤电活动(EDA)分析和动态因果建模来检查皮质间相互作用的变化。. 结果表明,引起交感 EDA 反应的刺激与更负的 N170 幅度相关,这可能是对面孔反应增强唤醒的标志。另一方面,愉悦性气味在不愉快或愉快时会导致更负的 N1 成分和顶点正电势的降低。关于连通性,不愉快的气味会增强从下颞叶(ITG)到中颞叶的前向连接,这与处理可变性面部特征有关。相反,刺激后交感反应的发生与同一连接的抑制和从 ITG 到梭状回面孔区的后向连接的增强相关。. 这些发现表明,不愉快的气味可能会增强对情绪表达和心理状态的解释,而能够引起交感唤醒的面孔则会优先处理身份。