Department of Nuclear Medicine and Division of Neuroscience, Scientific Institute San Raffaele, Milano, Italy.
Neuroimage. 2012 Jan 16;59(2):1804-17. doi: 10.1016/j.neuroimage.2011.08.018. Epub 2011 Aug 22.
Emotions are complex events recruiting distributed cortical and subcortical cerebral structures, where the functional integration dynamics within the involved neural circuits in relation to the nature of the different emotions are still unknown. Using fMRI, we measured the neural responses elicited by films representing basic emotions (fear, disgust, sadness, happiness). The amygdala and the associative cortex were conjointly activated by all basic emotions. Furthermore, distinct arrays of cortical and subcortical brain regions were additionally activated by each emotion, with the exception of sadness. Such findings informed the definition of three effective connectivity models, testing for the functional integration of visual cortex and amygdala, as regions processing all emotions, with domain-specific regions, namely: i) for fear, the frontoparietal system involved in preparing adaptive motor responses; ii) for disgust, the somatosensory system, reflecting protective responses against contaminating stimuli; iii) for happiness: medial prefrontal and temporoparietal cortices involved in understanding joyful interactions. Consistently with these domain-specific models, the results of the effective connectivity analysis indicate that the amygdala is involved in distinct functional integration effects with cortical networks processing sensorimotor, somatosensory, or cognitive aspects of basic emotions. The resulting effective connectivity networks may serve to regulate motor and cognitive behavior based on the quality of the induced emotional experience.
情绪是复杂的事件,需要调用分布于大脑皮质和皮质下的结构,而与不同情绪性质相关的这些神经回路的功能整合动力学仍不清楚。我们使用 fMRI 测量了代表基本情绪(恐惧、厌恶、悲伤、快乐)的电影引发的神经反应。杏仁核和联合皮层被所有基本情绪共同激活。此外,除了悲伤之外,每个情绪还会额外激活特定的皮质和皮质下脑区。这些发现为定义三个有效的连通性模型提供了信息,用于测试视觉皮层和杏仁核作为处理所有情绪的区域与特定领域区域(即:i)对于恐惧,参与准备适应性运动反应的额顶系统;ii)对于厌恶,涉及保护性反应的躯体感觉系统,以抵御污染性刺激;iii)对于快乐:涉及理解愉快互动的内侧前额叶和颞顶叶皮层)的功能整合。与这些特定领域的模型一致,有效连通性分析的结果表明,杏仁核参与了与处理感觉运动、躯体感觉或基本情绪认知方面的皮质网络的不同功能整合效应。由此产生的有效连通性网络可用于根据诱导的情绪体验的质量来调节运动和认知行为。