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Updated: Aug 6, 2026

Dual-Task Stroop Paradigm for Detecting Cognitive Deficits in High-Functioning Stroke Patients
Published on: December 16, 2022
Differential contributions of inhibition and task engagement to workload: evidence from a novel adaptive Stroop task
Thipkanlaya Jaiaue1, Andrew Cooke1, Germano Gallicchio1
1Institute for the Psychology of Elite Performance, Bangor University, UK.
Abstract:
This study examined the effects of inhibitory load and task engagement on workload using self-report, behavioural, and physiological measures. Thirty-five adults completed Stroop task versions designed to manipulate inhibitory load-by varying Stroop congruency-and task engagement-through adaptive and non-adaptive pacing. A greater inhibitory load (compared to a lower load) resulted in a greater perceived workload, along with impaired performance, increased visual engagement (reduce blinking), and reduced boredom. Greater task engagement (compared to lower engagement) resulted in even greater perceived workload, along with more efficient information processing, increased visual engagement, and a slight reduction in parasympathetic tone from baseline (reduced heart rate variability). It also led to increased and anticipated mental fatigue while mitigating the increases in sleepiness observed under lower engagement. These findings demonstrate that perceived workload is sensitive to both inhibitory load and task engagement. Combining high inhibitory load and adaptive pacing produced the greatest perceived workload, offering a promising paradigm for advancing workload research.

