脑磁图
刺激(心理学)
计算机科学
感知
人工智能
功能连接
视觉感受
神经科学
功能磁共振成像
模式识别(心理学)
卷积神经网络
沟通
计算模型
脑电图
神经影像学
网络动力学
视皮层
体感系统
神经生理学
背
功能成像
视觉处理
心理学
眼球运动
可视对象
意识的神经相关物
计算机视觉
语音识别
作者
Francesco de Pasquale,Chiara De Giorgi,Stefania Della Penna,Paolo Papale,Andrea Leo,Emiliano Ricciardi,Viviana Betti
标识
DOI:10.1523/jneurosci.0256-25.2025
摘要
The perception of the external environment relies on a cascade of neural computations in the visual cortex, where stimulus features are represented hierarchically. These features can be extracted through convolutional neural networks (CNNs) from naturalistic stimuli. Neuroimaging studies showed that these are processed along the dorsal and ventral visual streams and linked a gradient of increasing complexity to sequential activations and reorganization of cortical interactions. Spectrally, in the alpha and beta bands, magnetoencephalography revealed that natural viewing induced a reduction in the amplitude of functional connectivity and a maintenance of topography at rest. However, the impact of specific stimulus features on functional connectivity remains unclear. To address this gap, we acquired MEG data on 12 subjects (5 female) during movie watching and used CNN to track the dynamics of movie features. Then, we compared the temporal dynamics of CNN layers with changes in functional connectivity in the alpha and beta bands. Our findings show that feature encoding in functional connectivity relates to a complex temporal, spectral, and topological organization. In both bands, increasing stimulus complexity involved a higher number of connections and longer temporal delays between stimulus and the connectivity dynamics. Moreover, as complexity increased, we observed a shift in the involvement of connector hubs from low-level nodes to high-level ones in the visual network. Finally, a spectral dissociation emerged: the alpha band primarily encoded midlevel features, while the beta band encoded higher-level ones.
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