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首页> 外文期刊>Cognition: International Journal of Cognitive Psychology >Modality-specific attention attenuates visual-tactile integration and recalibration effects by reducing prior expectations of a common source for vision and touch
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Modality-specific attention attenuates visual-tactile integration and recalibration effects by reducing prior expectations of a common source for vision and touch

机译:通过减少对视觉和触摸的共同来源的先前期望,模态特异性注意力衰减了视觉触觉集成和重新校准效果

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At any moment in time, streams of information reach the brain through the different senses. Given this wealth of noisy information, it is essential that we select information of relevance - a function fulfilled by attention and infer its causal structure to eventually take advantage of redundancies across the senses. Yet, the role of selective attention during causal inference in cross-modal perception is unknown. We tested experimentally whether the distribution of attention across vision and touch enhances cross-modal spatial integration (visual-tactile ventriloquism effect, Expt. 1) and recalibration (visual-tactile ventriloquism aftereffect, Expt. 2) compared to modality-specific attention, and then used causal-inference modeling to isolate the mechanisms behind the attentional modulation. In both experiments, we found stronger effects of vision on touch under distributed than under modality-specific attention. Model comparison confirmed that participants used Bayes-optimal causal inference to localize visual and tactile stimuli presented as part of a visual-tactile stimulus pair, whereas simultaneously collected unity judgments indicating whether the visual-tactile pair was perceived as spatially-aligned relied on a sub-optimal heuristic. The best-fitting model revealed that attention modulated sensory and cognitive components of causal inference. First, distributed attention led to an increase of sensory noise compared to selective attention toward one modality. Second, attending to both modalities strengthened the stimulus-independent expectation that the two signals belong together, the prior probability of a common source for vision and touch. Yet, only the increase in the expectation of vision and touch sharing a common source was able to explain the observed enhancement of visual-tactile integration and recalibration effects with distributed attention. In contrast, the change in sensory noise explained only a fraction of the observed enhancements, as its consequences vary with the overall level of noise and stimulus congruency. Increased sensory noise leads to enhanced integration effects for visual-tactile pairs with a large spatial discrepancy, but reduced integration effects for stimuli with a small or no cross-modal discrepancy. In sum, our study indicates a weak a priori association between visual and tactile spatial signals that can be strengthened by distributing attention across both modalities.
机译:在任何时候,信息流都通过不同的感官到达大脑。鉴于这一丰富的嘈杂信息,我们必须选择相关的信息 - 一种通过注意力实现的功能,并推断出其因果结构,最终利用冗余。然而,在跨模式引起的因果推断过程中选择性注意的作用是未知的。我们通过实验测试了对视觉和触摸的关注分布增强了跨模态空间集成(视觉触觉腹腔效应,Expt。然后使用因果推断建模,将注意力调制背后的机制隔离。在这两个实验中,我们发现在分布下的视觉触感的效果比在特定于模态的关注下。模型比较证实,参与者利用贝叶斯最佳因果推理来定位作为视觉触觉刺激对的一部分的视觉和触觉刺激,而同时收集的统一判断,指示视觉触觉对是否被视为空间对齐的视觉 - 触觉对依赖于子 - 开发主义。最佳拟合模型揭示了注意力调制的感官和认知组件的因果推断。首先,分布式注意力导致感觉噪音的增加与选择性关注一个模态相比。其次,参加两种方式加强了两种信号所属的刺激的期望,普遍源的常见源的概率和触摸。然而,只有愿景和触摸共享共享共享共同来源的增加就可以解释了观察到的可视化触觉集成和重新校准效果的增强,并具有分布式关注。相反,感觉噪声的变化仅解释了观察到的增强部分,因为其后果随着噪声和刺激的总体水平而变化。增加的感官噪声导致具有大空间差异的视觉触觉对的增强积分效果,但是具有小或没有跨模型差异的刺激的集成效果。总而言之,我们的研究表明,通过在两种模式中分配注意力可以加强的视觉和触觉空间信号之间的先验结合。

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