Angelini Luna, Jacques Corentin, Maillard Louis, Colnat-Coulbois Sophie, Rossion Bruno, Jonas Jacques
Université de Lorraine, IMoPA, UMR CNRS 7365, F-54000 Nancy, France.
Université de Lorraine, CHRU-Nancy, Service de Neurologie, F-54000 Nancy, France.
Brain Sci. 2024 Sep 6;14(9):906. doi: 10.3390/brainsci14090906.
A major scientific objective of cognitive neuroscience is to define cortico-cortical functional connections supporting cognitive functions. Here, we use an original approach combining frequency-tagging and direct electrical stimulation (DES) to test for bidirectional and cross-hemispheric category-specific modulations within the human cortical face network. A unique patient bilaterally implanted with depth electrodes in multiple face-selective cortical regions of the ventral occipito-temporal cortex (VOTC) was shown 70 s sequences of variable natural object images at a 6 Hz rate, objectively identifying deviant face-selective neural activity at 1.2 Hz (i.e., every five images). Concurrent electrical stimulation was separately applied for 10 seconds on four independently defined face-selective sites in the right and left VOTC. Upon stimulation, we observed reduced or even abolished face-selective neural activity locally and, most interestingly, at distant VOTC recording sites. Remote DES effects were found up to the anterior temporal lobe (ATL) in both forward and backward directions along the VOTC, as well as across the two hemispheres. This reduction was specific to face-selective neural activity, with the general 6 Hz visual response being mostly unaffected. Overall, these results shed light on the functional connectivity of the cortical face-selective network, supporting its non-hierarchical organization as well as bidirectional effective category-selective connections between posterior 'core' regions and the ATL. They also pave the way for widespread and systematic development of this approach to better understand the functional and effective connectivity of human brain networks.
认知神经科学的一个主要科学目标是定义支持认知功能的皮质-皮质功能连接。在这里,我们使用一种将频率标记与直接电刺激(DES)相结合的原始方法,来测试人类皮质面部网络内的双向和跨半球类别特异性调制。我们对一名独特的患者双侧植入了位于枕颞叶腹侧皮质(VOTC)多个面部选择性皮质区域的深度电极,以6赫兹的速率向其展示了70秒的可变自然物体图像序列,从而客观地识别出1.2赫兹(即每五张图像)时异常的面部选择性神经活动。同时,在右侧和左侧VOTC中四个独立定义的面部选择位点分别施加10秒的电刺激。在刺激过程中,我们观察到局部以及最有趣的是在远处的VOTC记录位点,面部选择性神经活动减少甚至消失。在沿着VOTC的前后方向以及跨两个半球的情况下,均发现了直至颞叶前部(ATL)的远程DES效应。这种减少是面部选择性神经活动所特有的,一般的6赫兹视觉反应大多未受影响。总体而言,这些结果揭示了皮质面部选择网络的功能连接性,支持其非层级组织以及后部“核心”区域与ATL之间的双向有效类别选择连接。它们还为广泛系统地开发这种方法以更好地理解人类脑网络的功能和有效连接性铺平了道路。