| Literature DB >> 22461778 |
Aurelio Bruno1, Inci Ayhan, Alan Johnston.
Abstract
The apparent duration of a visual stimulus has been shown to be influenced by its speed. For low speeds, apparent duration increases linearly with stimulus speed. This effect has been ascribed to the number of changes that occur within a visual interval. Accordingly, a higher number of changes should produce an increase in apparent duration. In order to test this prediction, we asked subjects to compare the relative duration of a 10-Hz drifting comparison stimulus with a standard stimulus that contained a different number of changes in different conditions. The standard could be static, drifting at 10 Hz, or mixed (a combination of variable duration static and drifting intervals). In this last condition the number of changes was intermediate between the static and the continuously drifting stimulus. For all standard durations, the mixed stimulus looked significantly compressed (∼20% reduction) relative to the drifting stimulus. However, no difference emerged between the static (that contained no changes) and the mixed stimuli (which contained an intermediate number of changes). We also observed that when the standard was displayed first, it appeared compressed relative to when it was displayed second with a magnitude that depended on standard duration. These results are at odds with a model of time perception that simply reflects the number of temporal features within an interval in determining the perceived passing of time.Entities:
Keywords: perceived duration; psychophysics; speed; stimulus order; temporal change
Year: 2012 PMID: 22461778 PMCID: PMC3309524 DOI: 10.3389/fpsyg.2012.00090
Source DB: PubMed Journal: Front Psychol ISSN: 1664-1078
Figure 1Schematic representations of the stimuli and the task. (A) Space-time representation of the three standard stimulus types used in the experiment. The standard intervals contained luminance-modulated sinusoidal gratings that could be, in different sessions, static, drifting at 10 Hz, or composed by an alternation of static and drifting subintervals whose duration varied from interval to interval (see Materials and Methods for a more detailed description). (B) Subjects had to keep fixation on the middle of the screen while two stimuli (the standard, fixed duration, and the comparison, with variable duration across trials) were sequentially displayed on either side of the fixation spot. Presentation order and spatial positions of standard and comparison were randomized on a trial-by-trial basis. At the end of each trial, subjects had to report which stimulus appeared to stay on for the longer duration by pressing a button.
Figure 2Effect of stimulus change on apparent duration and discrimination thresholds. (A) Mean perceived duration (calculated as the 50% point on the psychometric function, PSE) across 15 subjects for three standard durations and three stimulus configurations. Dashed lines represent the actual standard durations. Error bars indicate ±1 SEM. (B) Proportion change in perceived duration relative to the true standard duration [calculated from the data plotted in (A)] for the same conditions as in (A). (C) Example psychometric curves for a naïve observer for the three stimulus configurations and for 600 ms standard duration. (D) Average discrimination thresholds (defined as the difference between the 50 and 84% point on the psychometric function/the standard duration) for the same subjects and conditions as in (A). Error bars indicate ±1 SEM.
Figure 3Effect of presentation order on apparent duration and discrimination thresholds. (A) Proportion changes in perceived duration [(PSE/standard duration) − 1] averaged across 15 subjects for three standard durations (different panels) and three stimulus types (different symbols and colors). Dashed lines represent the actual standard duration. Error bars indicate ±1 SEM. (B) Mean discrimination threshold (divided by standard duration) for the same subjects and conditions as in (A).