Hao Qiao, Ogata Taiki, Ogawa Ken-Ichiro, Kwon Jinhwan, Miyake Yoshihiro
Department of Computational Intelligence and Systems Science, Tokyo Institute of Technology Yokohama, Japan.
Department of Computational Intelligence and Systems Science, Tokyo Institute of Technology Yokohama, Japan ; Research into Artifacts, Center for Engineering (RACE), The University of Tokyo Kashiwa, Japan.
Front Psychol. 2015 Sep 24;6:1429. doi: 10.3389/fpsyg.2015.01429. eCollection 2015.
The simultaneous perception of multimodal information in the environment during voluntary movement is very important for effective reactions to the environment. Previous studies have found that voluntary movement affects the simultaneous perception of auditory and tactile stimuli. However, the results of these experiments are not completely consistent, and the differences may be attributable to methodological differences in the previous studies. In this study, we investigated the effect of voluntary movement on the simultaneous perception of auditory and tactile stimuli using a temporal order judgment task with voluntary movement, involuntary movement, and no movement. To eliminate the potential effect of stimulus predictability and the effect of spatial information associated with large-scale movement in the previous studies, we randomized the interval between the start of movement and the first stimulus, and used small-scale movement. As a result, the point of subjective simultaneity (PSS) during voluntary movement shifted from the tactile stimulus being first during involuntary movement or no movement to the auditory stimulus being first. The just noticeable difference (JND), an indicator of temporal resolution, did not differ across the three conditions. These results indicate that voluntary movement itself affects the PSS in auditory-tactile simultaneous perception, but it does not influence the JND. In the discussion of these results, we suggest that simultaneous perception may be affected by the efference copy.
在自主运动过程中同时感知环境中的多模态信息对于有效应对环境非常重要。先前的研究发现,自主运动影响听觉和触觉刺激的同时感知。然而,这些实验的结果并不完全一致,差异可能归因于先前研究中的方法学差异。在本研究中,我们使用带有自主运动、非自主运动和无运动的时间顺序判断任务,研究了自主运动对听觉和触觉刺激同时感知的影响。为了消除先前研究中刺激可预测性的潜在影响以及与大规模运动相关的空间信息的影响,我们对运动开始与第一个刺激之间的间隔进行了随机化处理,并使用了小规模运动。结果,自主运动期间的主观同时性点(PSS)从非自主运动或无运动时触觉刺激先出现转变为听觉刺激先出现。作为时间分辨率指标的恰可察觉差(JND)在三种条件下没有差异。这些结果表明,自主运动本身会影响听觉 - 触觉同时感知中的PSS,但不影响JND。在对这些结果的讨论中,我们认为同时感知可能受传出副本的影响。