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Functional MRI Investigation of Audiovisual Interactions in Auditory Midbrain*

机译:听觉中脑视听相互作用的功能性MRI研究*

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摘要

The brain integrates information from different sensory modalities to form a representation of the environment and facilitate behavioral responses. The auditory midbrain or inferior colliculus (IC) is a pivotal station in the auditory system, integrating ascending and descending information from various auditory sources and cortical systems. The present study investigated the modulation of auditory responses in the IC by visual stimuli of different frequencies and intensities in rats using functional MRI (fMRI). Low-frequency (1 Hz) high-intensity visual stimulus suppressed IC auditory responses. However, high-frequency (10 Hz) or low-intensity visual stimuli did not alter the IC auditory responses. This finding demonstrates that cross-modal processing occurs in the IC in a manner that depends on the stimulus. Furthermore, only low-frequency high-intensity visual stimulus elicited responses in non-visual cortical regions, suggesting that the above cross-modal modulation effect may arise from top-down cortical feedback. These fMRI results provide insight to guide future studies of cross-modal processing in sensory pathways.
机译:大脑整合来自不同感觉方式的信息,以形成环境的表示并促进行为反应。听觉中脑或下丘脑(IC)是听觉系统中的枢纽站,整合了来自各种听觉来源和皮质系统的上升和下降信息。本研究使用功能性MRI(fMRI)研究了不同频率和强度的大鼠视觉刺激对IC中听觉反应的调节作用。低频(1 Hz)高强度视觉刺激抑制了IC听觉反应。但是,高频(10 Hz)或低强度视觉刺激不会改变IC的听觉反应。该发现表明交叉模式处理以依赖于刺激的方式在IC中发生。此外,只有低频高强度视觉刺激在非视觉皮层区域引起响应,这表明上述交叉模态调制效应可能源于自上而下的皮层反馈。这些功能磁共振成像结果提供了洞察力,可指导未来在感官途径中进行交叉模式处理的研究。

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