# The arrow of time: Advancing insights into action control from the arrow version of the Eriksen flanker task

**Authors:** K. Richard Ridderinkhof, Scott A. Wylie, Wery P. M. van den Wildenberg, Theodore R. Bashore, Maurits W. van der Molen

PMC · DOI: 10.3758/s13414-020-02167-z · 2020-10-25

## TL;DR

This paper reviews the development and impact of the arrow version of the Eriksen flanker task, a key tool in studying action control in cognitive psychology.

## Contribution

The paper provides a comprehensive tribute to the origins and evolution of the arrow flanker task and its influence on understanding action control.

## Key findings

- The arrow flanker task has been pivotal in revealing developmental trends in action control.
- It has helped identify action control deficits in neuropsychiatric disorders.
- The task is used to study enhanced action control in elite athletes.

## Abstract

Since its introduction by B. A. Eriksen and C. W. Eriksen (Perception & Psychophysics, 16, 143–49, 1974), the flanker task has emerged as one of the most important experimental tasks in the history of cognitive psychology. The impact of a seemingly simple task design involving a target stimulus flanked on each side by a few task-irrelevant stimuli is astounding. It has inspired research across the fields of cognitive neuroscience, psychophysiology, neurology, psychiatry, and sports science. In our tribute to Charles W. (“Erik”) Eriksen, we (1) review the seminal papers originating from his lab in the 1970s that launched the paradigmatic task and laid the foundation for studies of action control, (2) describe the inception of the arrow version of the Eriksen flanker task, (3) articulate the conceptual and neural models of action control that emerged from studies of the arrows flanker task, and (4) illustrate the influential role of the arrows flanker task in disclosing developmental trends in action control, fundamental deficits in action control due to neuropsychiatric disorders, and enhanced action control among elite athletes.

## Full-text entities

- **Genes:** CSE [NCBI Gene 1433]
- **Diseases:** AD (MESH:D000544), ADHD (MESH:D001289), deficits in cognitive control (MESH:D003072), hyperactivity (MESH:D006948), neurodegenerative diseases (MESH:D019636), hyperactive/kinetic syndrome (MESH:D020240), bradykinesia (MESH:D018476), rigidity (MESH:D009127), impulsivity (MESH:D007174), neuropsychiatric disorders (MESH:D001523), involuntary conflict (MESH:D014202), PD (MESH:D010300), inattention (MESH:D001308), neurodevelopmental disorder (MESH:D002658), R (MESH:C580424), HD (MESH:D006816), disorder (MESH:D009358)
- **Species:** Cercopithecidae (monkey, family) [taxon 9527], Homo sapiens (human, species) [taxon 9606], Malus domestica (apple, species) [taxon 3750], Equus caballus (domestic horse, species) [taxon 9796]

## Figures

4 figures with captions in the complete paper: https://tomesphere.com/paper/PMC7884358/full.md

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Source: https://tomesphere.com/paper/PMC7884358