Stress effects on the top-down control of visuospatial attention: Evidence from cue-dependent alpha oscillations

Cogn Affect Behav Neurosci. 2022 Aug;22(4):722-735. doi: 10.3758/s13415-022-00994-1. Epub 2022 Apr 5.

Abstract

Stress is assumed to inhibit the top-down control of attention and to facilitate bottom-up processing. Evidence from human experiments, however, remains scarce. Previous studies have addressed how stress affects the interplay of bottom-up and top-down mechanisms of attention. A key open question is in how far such effects can actually be attributed to a stress-induced modulation of top-down attention control. We sought to isolate top-down from bottom-up effects by assessing stress effects on anticipatory changes in alpha oscillations that precede stimulus processing. Participants performed in a cued target detection task in which a cue prompted them to covertly shift their attention to left or right screen positions, 20 min after being exposed to the bilateral feet cold pressor test or a warm water control procedure. The stressor led to a substantial increase in cortisol, peaking 20 min post stressor, along with rises in heart rate, blood pressure, and subjective ratings of stress and arousal. As expected, cued attention deployment led to higher alpha power over posterior electrodes contralateral versus ipsilateral to the attended hemifield during the cue-target interval. Importantly, this purely endogenous effect was potentiated by stress, however, significant differences were restricted to the middle of the cue-target interval and thus temporally separated from the appearance of the target. These results indicate that stress does not impair top-down attentional control per se but may introduce a qualitative change modulating the way attention is deployed to meet action goals.

Keywords: Acute stress; Alpha; Cold pressor test; Cortisol; EEG; Executive functions; Information processing.

Publication types

  • Research Support, Non-U.S. Gov't

MeSH terms

  • Arousal*
  • Cues*
  • Humans
  • Photic Stimulation
  • Visual Perception / physiology