Tsinghua Laboratory of Brain and Intelligence (THBI) and Department of Biomedical Engineering, Tsinghua University, Beijing, P.R. China.
Department of Epilepsy Center, Tsinghua University Yuquan Hospital, Beijing, P.R. China.
Cereb Cortex. 2019 Feb 1;29(2):517-528. doi: 10.1093/cercor/bhx334.
Previous studies have shown insular activations involving sensory, motor, and affective processing. However, the functional roles of subdivisions within the human insula are still not well understood. In the present study, we used intracranial electroencephalography and electrical cortical stimulation to investigate the causal roles of subdivisions of the insula in auditory emotion perception in epilepsy patients implanted with depth electrodes in this brain region. The posterior and the anterior subdivisions of the human insula, identified based on structural and functional analyses, showed distinct response properties to auditory emotional stimuli. The posterior insula showed auditory responses that resemble those observed in Heschl's gyrus, whereas the anterior insula (AI) responded to the emotional contents of the auditory stimuli in a similar way as observed in the amygdala. Furthermore, the degree of the differentiation between various emotion types increased from the posterior to the AI. Our findings suggest different roles played by the two regions of the human insula and a transformation from sensory to affective representations in auditory modality along the posterior-to-anterior axis in the human insula.
先前的研究表明,脑岛的活动涉及感觉、运动和情感处理。然而,人脑岛各部分的功能作用仍未得到很好的理解。在本研究中,我们使用颅内脑电图和皮质电刺激来研究癫痫患者在接受深度电极植入后,脑岛各部分在听觉情绪感知中的因果作用。基于结构和功能分析确定的人脑岛的后部分和前部分对听觉情绪刺激表现出不同的反应特性。后岛表现出类似于听神经束中观察到的听觉反应,而前岛(AI)则以类似于杏仁核中观察到的方式对听觉刺激的情绪内容做出反应。此外,各种情绪类型之间的差异程度从后岛到 AI 逐渐增加。我们的发现表明,人脑岛的两个区域发挥不同的作用,并且在听觉模态中,从后岛到 AI,感觉信息向情感信息的转换。