Bastiaansen Marcel, Berberyan Hermine, Stekelenburg Jeroen J, Schoffelen Jan Mathijs, Vroomen Jean
Department of Cognitive Neuropsychology, Tilburg School of Social and Behavioural Sciences, Tilburg, the Netherlands; Breda University of Applied Sciences, Academy for Leisure, Breda, the Netherlands.
Department of Cognitive Neuropsychology, Tilburg School of Social and Behavioural Sciences, Tilburg, the Netherlands; University of Groningen, Institute of Artificial Intelligence and Cognitive Engineering, Groningen, the Netherlands.
Brain Res. 2020 May 1;1734:146744. doi: 10.1016/j.brainres.2020.146744. Epub 2020 Feb 27.
Different inputs from a multisensory object or event are often integrated into a coherent and unitary percept, despite differences in sensory formats, neural pathways, and processing times of the involved modalities. Presumably, multisensory integration occurs if the cross-modal inputs are presented within a certain window of temporal integration where inputs are perceived as being simultaneous. Here, we examine the role of ongoing neuronal alpha (i.e. 10-Hz) oscillations in multimodal synchrony perception. While EEG was measured, participants performed a simultaneity judgement task with visual stimuli preceding auditory ones. At stimulus onset asynchronies (SOA's) of 160-200 ms, simultaneity judgements were around 50%. For trials with these SOA's, occipital alpha power was smaller preceding correct judgements, and the individual alpha frequency was correlated with the size of the temporal window of integration. In addition, simultaneity judgements were modulated as a function of oscillatory phase at 12.5 Hz, but the latter effect was only marginally significant. These results support the notion that oscillatory neuronal activity in the alpha frequency range, which has been taken to shape perceptual cycles, is instrumental in multisensory perception.
尽管多感官对象或事件的不同输入在感官形式、神经通路以及所涉及模态的处理时间上存在差异,但它们通常会被整合为一个连贯统一的感知。据推测,如果跨模态输入在某个时间整合窗口内呈现,即输入被感知为同时发生时,就会发生多感官整合。在此,我们研究正在进行的神经元阿尔法(即10赫兹)振荡在多模态同步感知中的作用。在测量脑电图(EEG)时,参与者对视觉刺激先于听觉刺激的情况执行同时性判断任务。在160 - 200毫秒的刺激起始异步时间(SOA)下,同时性判断约为50%。对于这些SOA的试验,在正确判断之前枕叶阿尔法功率较小,并且个体阿尔法频率与整合的时间窗口大小相关。此外,同时性判断根据12.5赫兹的振荡相位进行调制,但后一种效应仅略微显著。这些结果支持了这样一种观点,即被认为塑造感知周期的阿尔法频率范围内的振荡神经元活动在多感官感知中发挥作用。