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Mapping the Spatiotemporal Evolution of Emotional Processing: An MEG Study Across Arousal and Valence Dimensions

机译:映射情感过程的时空演变:跨唤醒和价位维度的MEG研究

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摘要

Electrophysiological and functional neuroimaging findings indicate that the neural mechanisms underlying the processing of emotional dimensions (i.e., valence, arousal) constitute a spatially and temporally distributed emotional network, modulated by the arousal and/or valence of the emotional stimuli. We examined the time course and source distribution of gamma time-locked magnetoencephalographic activity in response to a series of emotional stimuli viewed by healthy adults. We used a beamformer and a sliding window analysis to generate a succession of spatial maps of event-related brain responses across distinct levels of valence (pleasant/unpleasant) and arousal (high/low) in 30–100 Hz. Our results show parallel emotion-related responses along specific temporal windows involving mainly dissociable neural pathways for valence and arousal during emotional picture processing. Pleasant valence was localized in the left inferior frontal gyrus, while unpleasant valence in the right occipital gyrus, the precuneus, and the left caudate nucleus. High arousal was processed by the left orbitofrontal cortex, amygdala, and inferior frontal gyrus, as well as the right middle temporal gyrus, inferior parietal lobule, and occipital gyrus. Pleasant by high arousal interaction was localized in the left inferior and superior frontal gyrus, as well as the right caudate nucleus, putamen, and gyrus rectus. Unpleasant by high arousal interaction was processed by the right superior parietal gyrus. Valence was prioritized (onset at ∼60 ms) to all other effects, while pleasant valence was short lived in comparison to unpleasant valence (offsets at ∼110 and ∼320 ms, respectively). Both arousal and valence × arousal interactions emerged relatively early (onset at ∼150 ms, and ∼170 ms, respectively). Our findings support the notion that brain regions differentiate between valence and arousal, and demonstrate, for the first time, that these brain regions may also respond to distinct combinations of these two dimensions within specific time windows.
机译:电生理学和功能性神经影像学发现表明,情绪维度(即化合价,唤醒)处理基础的神经机制构成了时空分布的情绪网络,由情绪刺激的唤醒和/或化合调节。我们检查了健康成年人观察到的一系列情绪刺激后,伽马时间锁定磁脑电图活动的时程和来源分布。我们使用了波束形成器和滑动窗口分析来生成一系列事件相关的大脑反应的空间图,这些图涉及30-100 Hz的不同价位(愉快/不愉快)和唤醒(高/低)。我们的研究结果表明,沿着特定的时间窗,与情绪相关的平行反应主要涉及情感图片处理过程中价和唤醒的可分离神经通路。宜人的价位位于左侧额下回,而不愉快的价位位于右枕回,前突和左尾状核。左眶额叶皮层,杏仁核和额下回以及右中颞叶回,顶顶小叶和枕回均引起了高度唤醒。高刺激引起的愉悦性位于左下额和上额额回,以及右尾状核,壳核和直回。右上顶回处理了高唤醒互动引起的不适。价位优先于其他所有效应(约60毫秒开始),而愉悦的价位与不愉快的价位相比寿命短(分别在约110毫秒和约320毫秒处偏移)。唤醒和价×唤醒交互都相对较早出现(分别在〜150 ms和〜170 ms出现)。我们的发现支持以下观点:大脑区域区分价和唤醒,并且首次证明这些大脑区域也可能在特定的时间窗口内对这两个维度的不同组合做出响应。

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