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利用视觉到听觉的感官替代揭示感官处理中的灵活性和稳定性。

Flexibility and Stability in Sensory Processing Revealed Using Visual-to-Auditory Sensory Substitution.

作者信息

Hertz Uri, Amedi Amir

机构信息

Department of Medical Neurobiology, Institute for Medical Research Israel-Canada (IMRIC), Hadassah Medical School, Hebrew University of Jerusalem, Jerusalem 91220, Israel Interdisciplinary Center for Neural Computation, The Edmond & Lily Safra Center for Brain Sciences (ELSC), Hebrew University of Jerusalem, Jerusalem 91905, Israel.

出版信息

Cereb Cortex. 2015 Aug;25(8):2049-64. doi: 10.1093/cercor/bhu010. Epub 2014 Feb 10.

Abstract

The classical view of sensory processing involves independent processing in sensory cortices and multisensory integration in associative areas. This hierarchical structure has been challenged by evidence of multisensory responses in sensory areas, and dynamic weighting of sensory inputs in associative areas, thus far reported independently. Here, we used a visual-to-auditory sensory substitution algorithm (SSA) to manipulate the information conveyed by sensory inputs while keeping the stimuli intact. During scan sessions before and after SSA learning, subjects were presented with visual images and auditory soundscapes. The findings reveal 2 dynamic processes. First, crossmodal attenuation of sensory cortices changed direction after SSA learning from visual attenuations of the auditory cortex to auditory attenuations of the visual cortex. Secondly, associative areas changed their sensory response profile from strongest response for visual to that for auditory. The interaction between these phenomena may play an important role in multisensory processing. Consistent features were also found in the sensory dominance in sensory areas and audiovisual convergence in associative area Middle Temporal Gyrus. These 2 factors allow for both stability and a fast, dynamic tuning of the system when required.

摘要

感觉处理的经典观点涉及感觉皮层中的独立处理以及联合区域中的多感觉整合。这种层次结构受到了感觉区域中多感觉反应以及联合区域中感觉输入动态加权证据的挑战,这些证据目前是分别报道的。在这里,我们使用了一种视觉到听觉的感觉替代算法(SSA)来操纵感觉输入所传达的信息,同时保持刺激完整。在SSA学习前后的扫描过程中,向受试者呈现视觉图像和听觉音景。研究结果揭示了两个动态过程。首先,感觉皮层的跨模态衰减在SSA学习后改变了方向,从听觉皮层的视觉衰减变为视觉皮层的听觉衰减。其次,联合区域的感觉反应特征从对视觉最强反应变为对听觉最强反应。这些现象之间的相互作用可能在多感觉处理中起重要作用。在感觉区域的感觉优势和联合区域颞中回的视听汇聚中也发现了一致的特征。这两个因素使得系统在需要时既能保持稳定,又能进行快速、动态的调整。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/d646/4494022/bfe73f572422/bhu01001.jpg

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