Bollini Alice, Campus Claudio, Esposito Davide, Gori Monica
Unit for Visually Impaired People, Istituto Italiano di Tecnologia, Genoa, Italy.
DIBRIS, Università di Genova, Genoa, Italy.
Front Neurosci. 2020 Sep 29;14:557063. doi: 10.3389/fnins.2020.557063. eCollection 2020.
The human brain uses perceptual information to create a correct representation of the external world. Converging data indicate that the perceptual processing of, space, and quantities frequently is based on a shared mental magnitude system, where low and high quantities are represented in the left and right space, respectively. The present study explores how the magnitude affects spatial representation in the tactile modality. We investigated these processes using stimulus-response (S-R) compatibility tasks (i.e., sensorimotor tasks that present an association/dissociation between the perception of a stimulus and the required action, generally increasing/decreasing accuracy and decreasing/increasing reaction times of the subject). In our study, the participant performed a discrimination task between high- and low-frequency vibrotactile stimuli, regardless of the stimulation's spatial position. When the response code was incompatible with the mental magnitude line (i.e., left button for high-frequency and right button for low-frequency responses), we found that the participants bypassed the spatial congruence, showing a magnitude S-R compatibility effect. We called this phenomenon the Spatial-Tactile Association of Response Codes (STARC) effect. Moreover, we observed that the internal frame of reference embodies the STARC effect. Indeed, the participants' performance reversed between uncrossed- and crossed-hands posture, suggesting that spatial reference frames play a role in the process of expressing mental magnitude, at least in terms of the tactile modality.
人类大脑利用感知信息来构建外部世界的正确表征。越来越多的数据表明,对空间和数量的感知处理通常基于一个共享的心理量级系统,其中低数量和高数量分别在左空间和右空间中表征。本研究探讨了量级如何影响触觉模态中的空间表征。我们使用刺激-反应(S-R)兼容性任务(即呈现刺激感知与所需动作之间关联/解离的感觉运动任务,通常会提高/降低受试者的准确性并减少/增加反应时间)来研究这些过程。在我们的研究中,参与者执行了高频和低频振动触觉刺激之间的辨别任务,而不考虑刺激的空间位置。当反应编码与心理量级线不兼容时(即高频用左键,低频用右键反应),我们发现参与者绕过了空间一致性,表现出量级S-R兼容性效应。我们将这种现象称为反应编码的空间-触觉关联(STARC)效应。此外,我们观察到内部参照系体现了STARC效应。事实上,参与者在双手未交叉和交叉姿势下的表现相反,这表明空间参照系在表达心理量级的过程中发挥了作用,至少在触觉模态方面是这样。