Krugliak Alexandra, Noppeney Uta
Centre for Computational Neuroscience and Cognitive Robotics, University of Birmingham, Edgbaston B15 2TT, Birmingham, UK, England.
Neuropsychologia. 2016 Jul 29;88:65-73. doi: 10.1016/j.neuropsychologia.2015.09.027. Epub 2015 Sep 30.
In everyday life our senses are exposed to a constant influx of sensory signals. The brain binds signals into a coherent percept based on temporal, spatial or semantic correspondences. In addition, synaesthetic correspondences may form important cues for multisensory binding. This study focussed on the synaesthetic correspondences between auditory pitch and visual size. While high pitch has been associated with small objects in static contexts, recent research has surprisingly found that increasing size is linked with rising pitch. The current study presented participants with small/large visual circles/discs together with high/low pitched pure tones in an intersensory selective attention paradigm. Whilst fixating a central cross participants discriminated between small and large visual size in the visual modality or between high and low pitch in the auditory modality. Across a series of five experiments, we observed convergent evidence that participants associated small visual size with low pitch and large visual size with high pitch. In other words, we observed the pitch-size mapping that has previously been observed only for dynamic contexts. We suggest that these contradictory findings may emerge because participants can interpret visual size as an index of permanent object size or distance (e.g. in motion) from the observer. Moreover, the pitch-size mapping may depend not only on relative but also on the absolute levels of pitch and size of the presented stimuli.
在日常生活中,我们的感官不断受到大量感官信号的冲击。大脑会根据时间、空间或语义上的对应关系,将这些信号整合为连贯的感知。此外,通感对应关系可能会形成多感官整合的重要线索。本研究聚焦于听觉音高与视觉大小之间的通感对应关系。在静态情境中,高音调常与小物体相关联,但最近的研究却惊人地发现,物体尺寸增大与音高升高有关。在一项跨感官选择性注意范式研究中,研究人员向参与者呈现了大小不同的视觉圆圈/圆盘,并同时播放高低不同的纯音。参与者在注视中央十字时,需在视觉模式下区分视觉大小,或在听觉模式下区分音高。在一系列五个实验中,我们观察到了一致的证据,即参与者将小视觉尺寸与低音高相关联,将大视觉尺寸与高音高相关联。换句话说,我们观察到了之前仅在动态情境中才出现的音高 - 尺寸映射。我们认为,这些相互矛盾的发现可能是因为参与者可以将视觉大小解释为物体的固定尺寸或与观察者的距离(例如在运动中)的指标。此外,音高 - 尺寸映射可能不仅取决于相对的音高和大小水平,还取决于所呈现刺激的绝对音高和大小水平。