| Literature DB >> 22973245 |
María Dolores de la Rosa1, Daniel Sanabria, Mariagrazia Capizzi, Angel Correa.
Abstract
It has been recently shown that temporal orienting demands controlled attention (Capizzi et al., 2012). However, there is current debate on whether temporal preparation guided by regular rhythms also requires the generation of endogenous temporal expectancies or rather involves a mechanism independent of executive control processes. We investigated this issue by using a dual-task paradigm in two different experiments. In Experiment 1, the single-task condition measured reaction time to respond to the onset of an auditory stimulus preceded by either a regular or an irregular auditory rhythm. The dual-task condition additionally included a working memory task, which demanded mental counting and updating. In Experiment 2, the simultaneously WM task was a variant of the Sternberg Task. We hypothesized that, if temporal preparation induced by rhythms did not involve executive processing, it would not be interfered by the simultaneous working memory task. The results showed that participants could anticipate the moment of target onset on the basis of the regular rhythm and, more important, this ability resisted the interference from the double task condition in both experiments. This finding supports that temporal preparation induced by rhythms, in contrast to temporal orienting, does not require resources of executive control.Entities:
Keywords: bottom-up; dual-task; exogenous attention; reaction times; stimulus-driven; temporal orienting; working memory
Year: 2012 PMID: 22973245 PMCID: PMC3428808 DOI: 10.3389/fpsyg.2012.00308
Source DB: PubMed Journal: Front Psychol ISSN: 1664-1078
Figure 1Schematic representation of events in a trial in the regular rhythm. In the irregular rhythm the duration of each interval varied and could be either 150, 350, 550, 750, or 950 ms.
Mean RTs for each Foreperiod (800, 1100, 1400 ms), Rhythm (regular, irregular), and Task condition (single-task, dual-task).
| Regular rhythm | Irregular rhythm | |||||
|---|---|---|---|---|---|---|
| 800 | 1100 | 1400 | 800 | 1100 | 1400 | |
| Single-task | 332 (15) | 324 (15) | 354 (15) | 371 (14) | 348 (16) | 355 (15) |
| Dual-task | 422 (25) | 402 (22) | 416 (22) | 450 (22) | 431 (25) | 416 (24) |
Values in parentheses are standard error of the mean.
Figure 2Mean RTs as a function of Rhythm (regular, irregular) and Task condition (single, dual). Error bars represent the standard error of the mean.
Figure 3Mean RTs as a function of the Rhythm (regular, irregular) and Foreperiod (800, 1100, and 1400 ms). Error bars represent the standard error of the mean.
Mean RTs for each Load (high, low) and Rhythm (regular, no, irregular).
| Regular rhythm | No rhythm | Irregular rhythm | |
|---|---|---|---|
| High load condition | 346 (29) | 422 (28) | 397 (22) |
| Low load condition | 329 (21) | 407 (26) | 397 (24) |
Values in parentheses are standard error of the mean.
Figure 4Mean RTs as a function of Load (high, low) and Rhythm (regular, no rhythm, and irregular) in Experiment 2. Error bars represent the standard error of the mean.