Biological Psychology, Faculty of Natural Science, Otto-von-Guericke-University Magdeburg, Magdeburg, Germany.
Center for Behavioural Brain Sciences, Otto-von-Guericke-University Magdeburg, Magdeburg, Germany.
Sci Rep. 2018 Jul 5;8(1):10208. doi: 10.1038/s41598-018-28495-7.
Every moment organisms are confronted with complex streams of information which they use to generate a reliable mental model of the world. There is converging evidence for several optimization mechanisms instrumental in integrating (or segregating) incoming information; among them are multisensory interplay (MSI) and temporal expectation (TE). Both mechanisms can account for enhanced perceptual sensitivity and are well studied in isolation; how these two mechanisms interact is currently less well-known. Here, we tested in a series of four psychophysical experiments for TE effects in uni- and multisensory contexts with different levels of modality-related and spatial uncertainty. We found that TE enhanced perceptual sensitivity for the multisensory relative to the best unisensory condition (i.e. multisensory facilitation according to the max-criterion). In the latter TE effects even vanished if stimulus-related spatial uncertainty was increased. Accordingly, computational modelling indicated that TE, modality-related and spatial uncertainty predict multisensory facilitation. Finally, the analysis of stimulus history revealed that matching expectation at trial n-1 selectively improves multisensory performance irrespective of stimulus-related uncertainty. Together, our results indicate that benefits of multisensory stimulation are enhanced by TE especially in noisy environments, which allows for more robust information extraction to boost performance on both short and sustained time ranges.
生物体时刻面临着复杂的信息流,它们利用这些信息来生成一个可靠的世界心理模型。有越来越多的证据表明,有几种优化机制在整合(或隔离)传入信息方面起着重要作用;其中包括多感觉相互作用(MSI)和时间预期(TE)。这两种机制都可以解释感知敏感性的增强,并且在孤立的情况下得到了很好的研究;目前尚不清楚这两种机制如何相互作用。在这里,我们在一系列四项心理物理学实验中测试了不同模态相关和空间不确定性水平的单感觉和多感觉环境中的 TE 效应。我们发现,与最佳单感觉条件相比,TE 增强了多感觉的感知敏感性(即根据最大准则的多感觉促进)。在后一种情况下,如果增加与刺激相关的空间不确定性,TE 效应甚至消失。因此,计算模型表明,TE、模态相关和空间不确定性预测了多感觉促进。最后,对刺激历史的分析表明,在试验 n-1 时匹配预期选择性地提高了多感觉性能,而与刺激相关的不确定性无关。总之,我们的结果表明,TE 增强了多感觉刺激的益处,特别是在嘈杂的环境中,这允许更稳健的信息提取,以提高短期和持续时间范围内的性能。