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皮层网络与连通性在愉悦性嗅觉感知中的作用。

Cortical network and connectivity underlying hedonic olfactory perception.

机构信息

Research Center 'E. Piaggio', School of Engineering, University of Pisa, Largo Lucio Lazzarino 1, 56122 Pisa, Italy.

Dipartimento di Ingegneria dell'Informazione, University of Pisa, Via G. Caruso 16, 56122 Pisa, Italy.

出版信息

J Neural Eng. 2021 Oct 11;18(5). doi: 10.1088/1741-2552/ac28d2.

Abstract

The emotional response to olfactory stimuli implies the activation of a complex cascade of events triggered by structures lying in the limbic system. However, little is known about how this activation is projected up to cerebral cortex and how different cortical areas dynamically interact each other.In this study, we acquired EEG from human participants performing a passive odor-perception task with odorants conveying positive, neutral and negative valence. A novel methodological pipeline integrating global field power (GFP), independent component analysis (ICA), dipole source localization was applied to estimate effective connectivity in the challenging scenario of single-trial low-synchronized stimulation.We identified the brain network and the neural paths, elicited at different frequency bands, i.e.θ(4-7Hz),α(8-12Hz)andβ(13-30Hz), involved in odor valence processing. This brain network includes the orbitofrontal cortex (OFC), the cingulate gyrus (CgG), the superior temporal gyrus (STG), the posterior cingulate cortex/precuneus (PCC/PCu) and the parahippocampal gyrus (PHG). It was analyzed using a time-varying multivariate autoregressive model to resolve time-frequency causal interactions. Specifically, the OFC acts as the main node for odor perception and evaluation of pleasant and unpleasant stimuli, whereas no specific path was observed for a neutral stimulus.The results introduce new evidences on the role of the OFC during hedonic perception and underpin its specificity during the odor valence assessment. Our findings suggest that, after the odor onset different, bidirectional interactions occur between the OFC and other brain regions associated with emotion recognition/categorization and memory according to the stimulus valence. This outcome unveils how the hedonic olfactory network dynamically changes based on odor valence.

摘要

嗅觉刺激的情绪反应意味着由位于边缘系统中的结构引发的复杂级联事件的激活。然而,对于这种激活如何向上投射到大脑皮层以及不同的皮层区域如何动态相互作用,我们知之甚少。

在这项研究中,我们从执行带有传递正性、中性和负性效价气味的被动气味感知任务的人类参与者中获取 EEG。我们应用了一种新的方法学管道,该管道整合了全局场功率(GFP)、独立成分分析(ICA)和偶极子源定位,以在单次低同步刺激的具有挑战性的情况下估计有效连通性。

我们确定了在不同频带(即θ(4-7Hz)、α(8-12Hz)和β(13-30Hz))中引起的涉及气味效价处理的大脑网络和神经路径。这个大脑网络包括眶额皮层(OFC)、扣带回(CgG)、颞上回(STG)、后扣带回/楔前叶(PCC/PCu)和海马旁回(PHG)。它使用时变多变量自回归模型进行分析,以解决时频因果相互作用。具体来说,OFC 作为嗅觉感知和评估愉快和不愉快刺激的主要节点,而中性刺激则没有观察到特定的路径。

这些结果为 OFC 在享乐感知中的作用提供了新的证据,并支持了其在气味效价评估中的特异性。我们的研究结果表明,在气味出现后,根据刺激效价,OFC 与其他与情绪识别/分类和记忆相关的大脑区域之间会发生不同的、双向的相互作用。这一结果揭示了基于气味效价的愉悦嗅觉网络如何动态变化。

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