A Cross-Modal System Linking Primary Auditory and Visual Cortices: Evidence From Intrinsic fMRI Connectivity Analysis
Autor: | Mark A. Eckert, Nirav Kamdar, Christian F. Beckmann, Catherine E. Chang, Vinod Menon, Michael D. Greicius |
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Jazyk: | angličtina |
Rok vydání: | 2008 |
Předmět: |
Adult
Male Visual perception genetic structures Posterior parietal cortex Sensory system Auditory cortex Article Gyrus Visual memory Cortex (anatomy) Neural Pathways medicine Image Processing Computer-Assisted Humans Radiology Nuclear Medicine and imaging Visual Cortex Auditory Cortex Brain Mapping Principal Component Analysis Radiological and Ultrasound Technology Magnetic Resonance Imaging medicine.anatomical_structure Visual cortex Neurology Female Neurology (clinical) Anatomy Nerve Net Psychology Neuroscience |
Popis: | Recent anatomical and electrophysiological evidence in primates indicates the presence of direct connections between primary auditory and primary visual cortex that constitute cross-modal systems. We examined the intrinsic functional connectivity (fcMRI) of putative primary auditory cortex in 32 young adults during resting state scanning. We found that the medial Heschl's gyrus was strongly coupled, in particular, to visual cortex along the anterior banks of the calcarine fissure. This observation was confirmed using novel group-level, tensor-based independent components analysis. fcMRI analysis revealed that although overall coupling between the auditory and visual cortex was significantly reduced when subjects performed a visual perception task, coupling between the anterior calcarine cortex and auditory cortex was not disrupted. These results suggest that primary auditory cortex has a functionally distinct relationship with the anterior visual cortex, which is known to represent the peripheral visual field. Our study provides novel, fcMRI-based, support for a neural system involving low-level auditory and visual cortices. |
Databáze: | OpenAIRE |
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