Marsicano Gianluca, Cerpelloni Filippo, Melcher David, Ronconi Luca
School of Psychology, Vita-Salute San Raffaele University, Milan, Italy.
Division of Neuroscience, IRCCS San Raffaele Scientific Institute, Milan, Italy.
Sci Rep. 2022 Feb 17;12(1):2782. doi: 10.1038/s41598-022-06503-1.
Natural events are often multisensory, requiring the brain to combine information from the same spatial location and timing, across different senses. The importance of temporal coincidence has led to the introduction of the temporal binding window (TBW) construct, defined as the time range within which multisensory inputs are highly likely to be perceptually bound into a single entity. Anomalies in TBWs have been linked to confused perceptual experiences and inaccurate filtering of sensory inputs coming from different environmental sources. Indeed, larger TBWs have been associated with disorders such as schizophrenia and autism and are also correlated to a higher level of subclinical traits of these conditions in the general population. Here, we tested the feasibility of using a web-based version of a classic audio-visual simultaneity judgment (SJ) task with simple flash-beep stimuli in order to measure multisensory temporal acuity and its relationship with schizotypal traits as measured in the general population. Results show that: (i) the response distribution obtained in the web-based SJ task was strongly similar to those reported by studies carried out in controlled laboratory settings, and (ii) lower multisensory temporal acuity was associated with higher schizotypal traits in the "cognitive-perceptual" domains. Our findings reveal the possibility of adequately using a web-based audio-visual SJ task outside a controlled laboratory setting, available to a more diverse and representative pool of participants. These results provide additional evidence for a close relationship between lower multisensory acuity and the expression of schizotypal traits in the general population.
自然事件通常是多感官的,这要求大脑在不同感官之间整合来自相同空间位置和时间的信息。时间一致性的重要性促使了时间绑定窗口(TBW)概念的引入,它被定义为多感官输入极有可能在感知上被绑定成单一实体的时间范围。TBW的异常与混乱的感知体验以及来自不同环境源的感官输入的不准确过滤有关。事实上,更大的TBW与精神分裂症和自闭症等疾病相关,并且在普通人群中也与这些病症的更高水平的亚临床特征相关。在这里,我们测试了使用基于网络的经典视听同步判断(SJ)任务(带有简单的闪光-蜂鸣声刺激)来测量多感官时间敏锐度及其与普通人群中测量的分裂型特质之间关系的可行性。结果表明:(i)在基于网络的SJ任务中获得的反应分布与在受控实验室环境中进行的研究报告的分布非常相似,并且(ii)在“认知-感知”领域中,较低的多感官时间敏锐度与较高的分裂型特质相关。我们的研究结果揭示了在受控实验室环境之外充分使用基于网络的视听SJ任务的可能性,该任务可供更多样化和更具代表性的参与者群体使用。这些结果为普通人群中较低的多感官敏锐度与分裂型特质的表达之间的密切关系提供了额外的证据。