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The brain in flow: A systematic review on the neural basis of the flow state.

Clara Alameda, Daniel Sanabria, Luis F Ciria

Cortex; a journal devoted to the study of the nervous system and behavior September 1, 2022 DOI: 10.1016/j.cortex.2022.06.005 via PubMed

Summary

AI-generated from the abstract

A systematic review of 25 studies involving 471 participants examined the neural correlates of flow—the subjective experience of automatic, effortless, and intrinsically rewarding task performance. Studies using EEG, fMRI, fNIRS, or tDCS converge on the involvement of anterior brain regions linked to attention, executive function, and reward, such as the dorsolateral prefrontal cortex, medial prefrontal cortex, and inferior frontal gyrus. However, the dynamics of these regions during flow are inconsistent across studies. The evidence is sparse and inconclusive, limiting theoretical debate. Major limitations include a small number of studies, high heterogeneity, and methodological constraints.

Study at a glance

Characteristics Systematic review Peer reviewed
Sample size 471
Population Participants in studies measuring or manipulating flow state with brain activity recording
Topics Philosophy of mind
Keywords Cognitive processing Consciousness EEG FMRI
Citations 69
Key finding The neural correlates of flow involve anterior brain areas linked to attention, executive function, and reward, but findings are inconsistent and the evidence is inconclusive.

Abstract

Flow state is a subjective experience that people report when task performance is experienced as automatic, intrinsically rewarding, optimal and effortless. While this intriguing phenomenon is the subject of a plethora of behavioural studies, only recently researchers have started to look at its neural correlates. Here, we aim to systematically and critically review the existing literature on the neural correlates of the flow state. Three electronic databases (Web of Science, Scopus and PsycINFO) were searched to acquire information on eligible articles in July, 2021, and updated in March, 2022. Studies that measured or manipulated flow state (through questionnaires or employing experimental paradigms) and recorded associated brain activity with electroencephalography (EEG), functional magnetic resonance (fMRI) or functional near-infrared spectroscopy (fNIRS) or manipulated brain activity with transcranial direct current stimulation (tDCS) were selected. We used the Cochrane Collaboration Risk of Bias 2 (RoB 2) tool to assess the methodological quality of eligible records. In total, 25 studies were included, which involved 471 participants. In general, the studies that experimentally addressed flow state and its neural dynamics seem to converge on the key role of structures linked to attention, executive function and reward systems, giving to the anterior brain areas (e.g., the DLPC, MPFC, IFG) a crucial role in the experience of flow. However, the dynamics of these brain regions during flow state are inconsistent across studies. In light of the results, we conclude that the current available evidence is sparse and inconclusive, which limits any theoretical debate. We also outline major limitations of this literature (the small number of studies, the high heterogeneity across them and their important methodological constraints) and highlight several aspects regarding experimental design and flow measurements that may provide useful avenues for future studies on this topic.

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