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A consensus guide to capturing the ability to inhibit actions and impulsive behaviors in the stop-signal task

eLife · 2019 · Vol. 8
Frederick VerbruggenAdam R. AronGuido P. H. BandChristian BestePatrick G. BissettAdam T. BrockettJoshua W. BrownSamuel R. ChamberlainChris ChambersHans ColoniusLorenza S. ColzatoBrian D. CorneilJames P. CoxonAnnie DupuisDawn M. EagleHugh GaravanIan GreenhouseAndrew HeathcoteRené J. HusterSara JahfariJ. Leon KenemansInge LeunissenChiang‐Shan R. LiGordon D. LoganDóra MatzkeSharon Morein‐ZamirAditya MurthyMartin ParéRussell A. PoldrackK. Richard RidderinkhofTrevor W. RobbinsMatthew R. RoeschKatya RubiaRussell SchacharJeffrey D. SchallAnn‐Kathrin StockNicole C. SwannKatharine N. ThakkarMaurits W. van der MolenLuc VermeylenMatthijs VinkJan R. WesselRobert WhelanBram B. ZandbeltC. Nico Boehler

Abstract

Response inhibition is essential for navigating everyday life. Its derailment is considered integral to numerous neurological and psychiatric disorders, and more generally, to a wide range of behavioral and health problems. Response-inhibition efficiency furthermore correlates with treatment outcome in some of these conditions. The stop-signal task is an essential tool to determine how quickly response inhibition is implemented. Despite its apparent simplicity, there are many features (ranging from task design to data analysis) that vary across studies in ways that can easily compromise the validity of the obtained results. Our goal is to facilitate a more accurate use of the stop-signal task. To this end, we provide 12 easy-to-implement consensus recommendations and point out the problems that can arise when they are not followed. Furthermore, we provide user-friendly open-source resources intended to inform statistical-power considerations, facilitate the correct implementation of the task, and assist in proper data analysis.

Neural and Behavioral Psychology StudiesNeural dynamics and brain functionBehavioral and Psychological StudiesTask (project management)Computer scienceStop signalDerailmentSIGNAL (programming language)Human–computer interactionSimplicityCompromiseEngineeringTelecommunications

MeSH terms

AnimalsDecision MakingHumansImpulsive BehaviorInhibition, PsychologicalModels, PsychologicalNeuropsychological TestsPsychomotor PerformanceReaction TimeModels, AnimalConsensusExecutive Function

Funding

  • European Commission
  • H2020 European Research Council
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