Task shielding is an important executive control demand in dual-task performance enabling the segregation of stimulus-response translation processes in each task to minimize between-task interference. Although neuroimaging studies have shown activity in left dorsolateral prefrontal cortex (dlPFC) during various multitasking performances, the specific role of dlPFC in task shielding, and whether non-invasive brain stimulation (NIBS) may facilitate task shielding remains unclear. We therefore applied a single-blind, crossover sham-controlled design in which 34 participants performed a dual-task experiment with either anodal transcranial direct current stimulation (atDCS, 1 mA, 20 minutes) or sham tDCS (1 mA, 30 seconds) over left dlPFC. In the dual-task paradigm, measuring task shielding, the temporal overlap between both tasks was manipulated. In line with previous studies, between-task interference was largest at high temporal task overlap. Most importantly, in these conditions of highest multitasking demands, atDCS compared to sham stimulation significantly reduced between-task interference in errors. These findings extend previous neuroimaging evidence and support modulation of successful task shielding through a conventional tDCS setup with the anodal electrode over the left dlPFC. Moreover, our results demonstrate that NIBS can improve shielding of the prioritized task processing, especially in conditions of highest vulnerability to between-task interference.
Datasets for: Mahesan, D., Antonenko, D., Flöel, A., & Fischer, R. (2023). Modulation of the executive control network by anodal tDCS over the left dorsolateral prefrontal cortex improves task shielding in dual tasking. Scientific Reports, 13(1), 6177. https://doi.org/10.1038/s41598-023-33057-7
atDCS: Data from anodal tDCS session shamtDCS: Data from sham tDCS session Codebook: Metadata explaining the columns in atDCS and shamtDCS