Martolini Chiara, Cappagli Giulia, Signorini Sabrina, Gori Monica
Unit for Visually Impaired People, Center for Human Technologies, Istituto Italiano di Tecnologia, via Enrico Melen 83, 16152 Genoa, Italy.
Center of Child Neuro-Ophthalmology, IRCCS Mondino Foundation, via Mondino 2, 27100 Pavia, Italy.
Brain Sci. 2021 Mar 9;11(3):343. doi: 10.3390/brainsci11030343.
Research has shown that the ability to integrate complementary sensory inputs into a unique and coherent percept based on spatiotemporal coincidence can improve perceptual precision, namely multisensory integration. Despite the extensive research on multisensory integration, very little is known about the principal mechanisms responsible for the spatial interaction of multiple sensory stimuli. Furthermore, it is not clear whether the size of spatialized stimulation can affect unisensory and multisensory perception. The present study aims to unravel whether the stimulated area's increase has a detrimental or beneficial effect on sensory threshold. Sixteen typical adults were asked to discriminate unimodal (visual, auditory, tactile), bimodal (audio-visual, audio-tactile, visuo-tactile) and trimodal (audio-visual-tactile) stimulation produced by one, two, three or four devices positioned on the forearm. Results related to unisensory conditions indicate that the increase of the stimulated area has a detrimental effect on auditory and tactile accuracy and visual reaction times, suggesting that the size of stimulated areas affects these perceptual stimulations. Concerning multisensory stimulation, our findings indicate that integrating auditory and tactile information improves sensory precision only when the stimulation area is augmented to four devices, suggesting that multisensory interaction is occurring for expanded spatial areas.
研究表明,基于时空重合将互补的感官输入整合为独特且连贯的感知的能力可以提高感知精度,即多感官整合。尽管对多感官整合进行了广泛研究,但对于多种感官刺激的空间相互作用的主要机制却知之甚少。此外,尚不清楚空间化刺激的大小是否会影响单感官和多感官感知。本研究旨在揭示受刺激区域的增加对感觉阈值是产生有害还是有益的影响。16名典型成年人被要求辨别由放置在前臂上的一台、两台、三台或四台设备产生的单峰(视觉、听觉、触觉)、双峰(视听、听触觉、视触觉)和三峰(视听触觉)刺激。与单感官条件相关的结果表明,受刺激区域的增加对听觉和触觉准确性以及视觉反应时间有不利影响,这表明受刺激区域的大小会影响这些感知刺激。关于多感官刺激,我们的研究结果表明,只有当刺激区域增加到四台设备时,整合听觉和触觉信息才会提高感觉精度,这表明在扩大的空间区域中正在发生多感官相互作用。