Kuroki Scinob, Yokosaka Takumi, Watanabe Junji
NTT Communication Science Laboratories, Nippon Telegraph and Telephone CorporationKanagawa, Japan.
Front Psychol. 2017 Jul 31;8:1295. doi: 10.3389/fpsyg.2017.01295. eCollection 2017.
Tactile estimation of sub-second time is essential for correct recognition of sensory inputs and dexterous manipulation of objects. Despite our intuitive understanding that time is robustly estimated in any situation, tactile sub-second time is altered by, for example, body movement, similar to how visual time is modulated by eye movement. The effects of simpler factors, such as stimulus location, intensity, and frequency, have also been reported in temporal tasks in other modalities, but their effects on tactile sub-second interval estimation remain obscure. Here, we were interested in whether a perceived short interval presented by tactile stimuli is altered only by changing stimulus features. The perceived interval between a pair of stimuli presented on the same finger apparently became short relative to that on different fingers; that of a weak-intensity pair relative to that of a pair with stronger intensity was decreased; and that of a pair with the same frequency relative to one with different frequencies was underestimated. These findings can be ascribed to errors in encoding temporal relationships: nearby-space/weak-intensity/similar-frequency stimuli presented within a short time difference are likely to be integrated into a single event and lead to relative time compression.
对亚秒级时间的触觉估计对于正确识别感觉输入和灵巧地操作物体至关重要。尽管我们直观地认为在任何情况下时间都能被稳健地估计,但触觉亚秒级时间会因身体运动等因素而改变,类似于视觉时间会因眼球运动而受到调制。在其他模态的时间任务中,也报道了诸如刺激位置、强度和频率等较简单因素的影响,但其对触觉亚秒级间隔估计的影响仍不清楚。在这里,我们感兴趣的是,由触觉刺激呈现的感知到的短间隔是否仅通过改变刺激特征而改变。在同一手指上呈现的一对刺激之间的感知间隔相对于在不同手指上呈现的刺激之间的间隔明显变短;弱强度刺激对的感知间隔相对于强强度刺激对的感知间隔减小;相同频率刺激对的感知间隔相对于不同频率刺激对的感知间隔被低估。这些发现可归因于编码时间关系时的错误:在短时间差内呈现的近空间/弱强度/相似频率刺激可能会被整合为单个事件并导致相对时间压缩。