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International Journal of Frontiers in Sociology, 2024, 6(4); doi: 10.25236/IJFS.2024.060414.

The neural mechanisms behind mind wandering phenomenon: A brief review

Author(s)

Ruiying Xie, Lifei Xu

Corresponding Author:
Ruiying Xie
Affiliation(s)

School of Economics and Management, Southwest Petroleum University, Chengdu, China

Abstract

Mind wandering is the ability of an individual to spontaneously shift from one mental state to another in response to external stimuli. It is a crucial feature of human cognitive processes. To better understand the neurological mechanisms underlying mind wandering, researchers have recently integrated brain imaging methods with the phenomenon of mind wandering. This method offers a fresh perspective on the neurological underpinnings of mind wandering. This study presents a review of previous research on mind wandering from a neuromanagement viewpoint and explains popular methods to the field. The aim is to deepen understanding and provide innovative applications for organizational management, as well as new perspectives and approaches for exploring and solving cognitive, emotional, and decision-making problems in organizations.

Keywords

Mind wandering, EEG, Neural management science, Behavioral research

Cite This Paper

Ruiying Xie, Lifei Xu. The neural mechanisms behind mind wandering phenomenon: A brief review. International Journal of Frontiers in Sociology (2024), Vol. 6, Issue 4: 82-85. https://doi.org/10.25236/IJFS.2024.060414.

References

[1] Smallwood J, Schooler J W. The restless mind [J]. Psychological bulletin, 2006, 132(6): 946.

[2] Mrazek M D, Franklin M S, Phillips D T, et al. Mindfulness training improves working memory capacity and GRE performance while reducing mind wandering[J]. Psychological science, 2013, 24(5): 776-781.

[3] Hasenkamp W, Wilson-Mendenhall C D, Duncan E, et al. Mind wandering and attention during focused meditation: a fine-grained temporal analysis of fluctuating cognitive states[J]. Neuroimage, 2012, 59(1): 750-760.

[4] Li Q, Ng K K H, Simon C M, et al. Recognising situation awareness associated with different workloads using EEG and eye-tracking features in air traffic control tasks[J]. Knowledge-Based Systems, 2023, 260: 110179.

[5] McVay J C, Kane M J. Why does working memory capacity predict variation in reading comprehension? On the influence of mind wandering and executive attention [J]. Journal of experimental psychology: general, 2012, 141(2): 302.

[6] Bozhilova N, Kuntsi J, Rubia K, et al. Electrophysiological modulation of sensory and attentional processes during mind wandering in attention-deficit/hyperactivity disorder[J]. NeuroImage: Clinical, 2021, 29: 102547.

[7] Groot J M, Boayue N M, Csifcsák G, et al. Probing the neural signature of mind wandering with simultaneous fMRI-EEG and pupillometry [J]. NeuroImage, 2021, 224: 117412.

[8] Koessmeier C, Büttner O B. Beyond the Smartphone's mere presence effect: A quantitative mobile eye tracking study on the visual and internal distraction potential of smartphones [J]. Computers in Human Behavior, 2022, 134: 107333.

[9] Robertson I H, Manly T, Andrade J, et al. Oops!' performance correlates of everyday attentional failures in traumatic brain injured and normal subjects[J]. Neuropsychologia, 1997, 35(6): 747-758.

[10] Baird B, Smallwood J, Lutz A, et al. The decoupled mind: mind-wandering disrupts cortical phase-locking to perceptual events [J]. Journal of Cognitive Neuroscience, 2014, 26(11): 2596-2607.

[11] Kam J W Y, Dao E, Farley J, et al. Slow fluctuations in attentional control of sensory cortex[J]. Journal of cognitive neuroscience, 2011, 23(2): 460-470.

[12] Arnau S, Löffler C, Rummel J, et al. Inter‐trial alpha power indicates mind wandering[J]. Psychophysiology, 2020, 57(6): e13581.

[13] Baldwin C L, Roberts D M, Barragan D, et al. Detecting and quantifying mind wandering during simulated driving [J]. Frontiers in human neuroscience, 2017, 11: 406.

[14] Wamsley E J, Summer T. Spontaneous entry into an “offline” state during wakefulness: A mechanism of memory consolidation? [J]. Journal of Cognitive Neuroscience, 2020, 32(9): 1714-1734.

[15] Andrillon T, Burns A, Mackay T, et al. Predicting lapses of attention with sleep-like slow waves [J]. Nature Communications, 2021, 12(1): 3657.

[16] Polychroni N, Herrojo Ruiz M, Terhune D B. Introspection confidence predicts EEG decoding of self‐generated thoughts and meta‐awareness[J]. Human Brain Map**, 2022, 43(7): 2311-2327.

[17] Martel A, Arvaneh M, Robertson I, et al. Distinct neural markers for intentional and unintentional task unrelated thought [J]. bioRxiv, 2019: 705061.