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- Title
Testing the effect of high-definition transcranial direct current stimulation of the insular cortex to modulate decision-making and executive control.
- Authors
Gorrino, Irene; Canessa, Nicola; Mattavelli, Giulia
- Abstract
Introduction: Previous neuroimaging evidence highlighted the role of the insular and dorsal anterior cingulate cortex (dACC) in conflict monitoring and decision-making, thus supporting the translational implications of targeting these regions in neuro-stimulation treatments for clinical purposes. Recent advancements of targeting and modeling procedures for high-definition tDCS (HD-tDCS) provided methodological support for the stimulation of otherwise challenging targets, and a previous study confirmed that cathodal HD-tDCS of the dACC modulates executive control and decision-making metrics in healthy individuals. On the other hand, evidence on the effect of stimulating the insula is still needed. Methods: We used a modeling/targeting procedure to investigate the effect of stimulating the posterior insula on Flanker and gambling tasks assessing, respectively, executive control and both loss and risk aversion in decision-making. HD-tDCS was applied through 6 small electrodes delivering anodal, cathodal or sham stimulation for 20 min in a within-subject offline design with three separate sessions. Results: Bayesian statistical analyses on Flanker conflict effect, as well as loss and risk aversion, provided moderate evidence for the null model (i.e., absence of HD-tDCS modulation). Discussion: These findings suggest that further research on the effect of HD-tDCS on different regions is required to define reliable targets for clinical applications. While modeling and targeting procedures for neuromodulation in clinical research could lead to innovative protocols for stand-alone treatment, or possibly in combination with cognitive training, assessing the effectiveness of insula stimulation might require sensitive metrics other than those investigated here.
- Subjects
TRANSCRANIAL direct current stimulation; CONTROL (Psychology); EXECUTIVE function; INSULAR cortex; LOSS aversion; DECISION making
- Publication
Frontiers in Behavioral Neuroscience, 2023, p01
- ISSN
1662-5153
- Publication type
Article
- DOI
10.3389/fnbeh.2023.1234837