Lankinen Kaisu, Ahveninen Jyrki, Jas Mainak, Raij Tommi, Ahlfors Seppo P
Athinoula A. Martinos Center for Biomedical Imaging, Massachusetts General Hospital, Charlestown, Massachusetts 02129
Department of Radiology, Harvard Medical School, Boston, Massachusetts 02115.
J Neurosci. 2024 Apr 24;44(17):e1119232024. doi: 10.1523/JNEUROSCI.1119-23.2024.
Previous studies have demonstrated that auditory cortex activity can be influenced by cross-sensory visual inputs. Intracortical laminar recordings in nonhuman primates have suggested a feedforward (FF) type profile for auditory evoked but feedback (FB) type for visual evoked activity in the auditory cortex. To test whether cross-sensory visual evoked activity in the auditory cortex is associated with FB inputs also in humans, we analyzed magnetoencephalography (MEG) responses from eight human subjects (six females) evoked by simple auditory or visual stimuli. In the estimated MEG source waveforms for auditory cortex regions of interest, auditory evoked response showed peaks at 37 and 90 ms and visual evoked response at 125 ms. The inputs to the auditory cortex were modeled through FF- and FB-type connections targeting different cortical layers using the Human Neocortical Neurosolver (HNN), which links cellular- and circuit-level mechanisms to MEG signals. HNN modeling suggested that the experimentally observed auditory response could be explained by an FF input followed by an FB input, whereas the cross-sensory visual response could be adequately explained by just an FB input. Thus, the combined MEG and HNN results support the hypothesis that cross-sensory visual input in the auditory cortex is of FB type. The results also illustrate how the dynamic patterns of the estimated MEG source activity can provide information about the characteristics of the input into a cortical area in terms of the hierarchical organization among areas.
先前的研究表明,听觉皮层活动会受到跨感觉视觉输入的影响。对非人类灵长类动物的皮层内分层记录表明,听觉皮层中听觉诱发活动呈前馈(FF)型分布,而视觉诱发活动呈反馈(FB)型分布。为了测试人类听觉皮层中的跨感觉视觉诱发活动是否也与反馈输入有关,我们分析了八名人类受试者(六名女性)在简单听觉或视觉刺激下诱发的脑磁图(MEG)反应。在感兴趣的听觉皮层区域的估计MEG源波形中,听觉诱发反应在37毫秒和90毫秒出现峰值,视觉诱发反应在125毫秒出现峰值。使用人类新皮层神经求解器(HNN),通过针对不同皮层层的前馈和反馈型连接对听觉皮层的输入进行建模,该求解器将细胞和电路水平的机制与MEG信号联系起来。HNN建模表明,实验观察到的听觉反应可以由前馈输入后接反馈输入来解释,而跨感觉视觉反应仅由反馈输入就可以充分解释。因此,MEG和HNN的综合结果支持了听觉皮层中的跨感觉视觉输入为反馈型的假设。结果还说明了估计的MEG源活动的动态模式如何能够根据区域间的层次组织提供有关皮层区域输入特征的信息。