Author:
Drewing Knut,Lezkan Alexandra
Abstract
AbstractHaptic texture perception is based on sensory information sequentially gathered during several lateral movements (“strokes”). In this process, sensory information of earlier strokes must be preserved in a memory system. We investigated whether this system may be a haptic sensory memory. In the first experiment, participants performed three strokes across each of two textures in a frequency discrimination task. Between the strokes over the first texture, participants explored an intermediate area, which presented either a mask (high-energy tactile pattern) or minimal stimulation (low-energy smooth surface). Perceptual precision was significantly lower with the mask compared with a three-strokes control condition without an intermediate area, approaching performance in a one-stroke-control condition. In contrast, precision in the minimal stimulation condition was significantly better than in the one-stroke control condition and similar to the three-strokes control condition. In a second experiment, we varied the number of strokes across the first stimulus (one, three, five, or seven strokes) and either presented no masking or repeated masking after each stroke. Again, masking between the strokes decreased perceptual precision relative to the control conditions without masking. Precision effects of masking over different numbers of strokes were fit by a proven model on haptic serial integration (Lezkan & Drewing, Attention, Perception, & Psychophysics 80(1): 177–192, 2018b) that modeled masking by repeated disturbances in the ongoing integration. Taken together, results suggest that masking impedes the processes of haptic information preservation and integration. We conclude that a haptic sensory memory, which is comparable to iconic memory in vision, is used for integrating sequentially gathered sensory information.
Funder
Justus-Liebig-Universität Gießen
Publisher
Springer Science and Business Media LLC
Subject
Linguistics and Language,Sensory Systems,Language and Linguistics,Experimental and Cognitive Psychology
Reference57 articles.
1. Ahissar, E., & Assa, E. (2016). Perception as a closed-loop convergence process. Elife, 5, e12830. https://doi.org/10.7554/eLife.12830
2. Auvray, M., Gallace, A., & Spence, C. (2011). Tactile short-term memory for stimuli presented on the fingertips and across the rest of the body surface. Attention, Perception, & Psychophysics, 73(4), 1227–1241. https://doi.org/10.3758/s13414-011-0098-6
3. Averbach E., & Sperling G. (1961). Short-term storage of information in vision. In C. Cherry (Ed.), Information theory (pp. 196–211). Butterworth.
4. Becker, M. W., Pashler, H., & Anstis, S. M. (2000). The role of iconic memory in change-detection tasks. Perception, 29(3), 273–286. https://doi.org/10.1068/p3035
5. Beek, P. J., Peper, C. E., & Daffertshofer, A. (2002). Modeling rhythmic interlimb coordination: Beyond the Haken–Kelso–Bunz model. Brain and Cognition, 48(1), 149–165. https://doi.org/10.1006/brcg.2001.1310
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