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视觉与触觉之间的空间注意力及跨模态交互作用。

Spatial attention and crossmodal interactions between vision and touch.

作者信息

Macaluso E, Driver J

机构信息

Institute of Cognitive Neuroscience, University College London, Alexandra House, 17 Queen Square, London WCIN 3AR, UK.

出版信息

Neuropsychologia. 2001;39(12):1304-16. doi: 10.1016/s0028-3932(01)00119-1.

Abstract

In the present paper, we review several functional imaging studies investigating crossmodal interactions between vision and touch relating to spatial attention. We asked how the spatial unity of a multimodal event in the external world might be represented in the brain, where signals from different modalities are initially processed in distinct brain regions. The results highlight several links between visual and tactile spatial representations. First, we found that activity in the anterior part of the intraparietal sulcus was influenced by stimulus position independently of the modality of the stimulation. This is consistent with crossmodal interactions via sensory convergence from early modality-specific spatial maps to higher-order multimodal regions. Second, we found that stimulation in, or attention to, one modality could affect activity in areas dedicated to a different modality, in a spatially-specific manner. These spatial crossmodal effects in unimodal regions demonstrate congruous activity in anatomically distant brain areas that represent similar external locations, implicating a distributed network of spatial representations in crossmodal integration. Finally, the results suggest that the temporo-parietal junction may be involved in aspects of controlling spatial attention, for both vision and touch. A multimodal attentional system may influence activity in distinct brain areas representing common regions of space for different modalities, thus suggesting a link between spatial attention and crossmodal integration.

摘要

在本论文中,我们回顾了几项功能成像研究,这些研究调查了与空间注意力相关的视觉和触觉之间的跨模态交互作用。我们探讨了外部世界中多模态事件的空间统一性在大脑中是如何被表征的,在大脑中,来自不同模态的信号最初在不同的脑区进行处理。研究结果突出了视觉和触觉空间表征之间的几个联系。首先,我们发现顶内沟前部的活动受刺激位置的影响,而与刺激的模态无关。这与通过从早期特定模态的空间图谱到高阶多模态区域的感觉汇聚进行的跨模态交互作用相一致。其次,我们发现对一种模态的刺激或关注能够以空间特异性的方式影响专门负责另一种模态的脑区的活动。单模态区域中的这些空间跨模态效应表明,在代表相似外部位置的解剖学上相距较远的脑区存在一致的活动,这意味着在跨模态整合中存在一个分布式的空间表征网络。最后,研究结果表明颞顶联合区可能参与视觉和触觉两者的空间注意力控制方面。一个多模态注意力系统可能会影响代表不同模态共同空间区域的不同脑区的活动,从而表明空间注意力和跨模态整合之间存在联系。

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