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颅内神经生理学和白质束末端研究的后背侧和腹面网络中的视觉信息途径。

Visual Information Routes in the Posterior Dorsal and Ventral Face Network Studied with Intracranial Neurophysiology and White Matter Tract Endpoints.

机构信息

Institut du Cerveau-Paris Brain Institute, ICM, Inserm U 1127, CNRS UMR 7225, Sorbonne Université, Centre de Neuroimagerie de Recherche, CENIR, Centre MEG-EEG and STIM Platform, Paris F-75013, France.

Sorbonne Université, Institut du Cerveau-Paris Brain Institute, ICM, Inserm U 1127, CNRS UMR 7225, Experimental Neurosurgery Team, Paris F-75013, France.

出版信息

Cereb Cortex. 2022 Jan 10;32(2):342-366. doi: 10.1093/cercor/bhab212.

Abstract

Occipitotemporal regions within the face network process perceptual and socioemotional information, but the dynamics and information flow between different nodes of this network are still debated. Here, we analyzed intracerebral EEG from 11 epileptic patients viewing a stimulus sequence beginning with a neutral face with direct gaze. The gaze could avert or remain direct, while the emotion changed to fearful or happy. N200 field potential peak latencies indicated that face processing begins in inferior occipital cortex and proceeds anteroventrally to fusiform and inferior temporal cortices, in parallel. The superior temporal sulcus responded preferentially to gaze changes with augmented field potential amplitudes for averted versus direct gaze, and large effect sizes relative to other network regions. An overlap analysis of posterior white matter tractography endpoints (from 1066 healthy brains) relative to active intracerebral electrodes in the 11 patients showed likely involvement of both dorsal and ventral posterior white matter pathways. Overall, our data provide new insight into the timing of face and social cue processing in the occipitotemporal brain and anchor the superior temporal cortex in dynamic gaze processing.

摘要

额颞叶区域在面部网络中处理感知和社会情感信息,但该网络中不同节点之间的动态和信息流仍存在争议。在这里,我们分析了 11 名癫痫患者在观看刺激序列时的颅内 EEG,该序列以具有直视的中性面孔开始。注视可以转移或保持直视,而情绪变为恐惧或高兴。N200 场电位峰值潜伏期表明,面部处理始于下枕叶皮质,并以前后向方式向梭状回和下颞叶皮质进行,并行处理。上颞叶回对注视变化的反应更为敏感,对于转移的注视与直接的注视,其场电位幅度增加,与其他网络区域相比,效果量较大。对 11 名患者的颅内活性电极与 1066 名健康大脑的后部白质束轨迹终点的重叠分析表明,背侧和腹侧后部白质通路都可能参与其中。总的来说,我们的数据为额颞叶大脑中面部和社会线索处理的时间进程提供了新的见解,并将上颞叶皮层锚定在动态注视处理中。

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