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Cognitive Neural Mechanism of Backward Inhibition and Deinhibition: A Review

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Specialty Psychology
Date 2022 Jun 7
PMID 35668866
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Abstract

Task switching is one of the typical paradigms to study cognitive control. When switching back to a recently inhibited task (e.g., "A" in an ABA sequence), the performance is often worse compared to a task without N-2 task repetitions (e.g., CBA). This difference is called the backward inhibitory effect (BI effect), which reflects the process of overcoming residual inhibition from a recently performed task (i.e., deinhibition). The neural mechanism of backward inhibition and deinhibition has received a lot of attention in the past decade. Multiple brain regions, including the frontal lobe, parietal, basal ganglia, and cerebellum, are activated during deinhibition. The event-related potentials (ERP) studies have shown that deinhibition process is reflected in the P1/N1 and P3 components, which might be related to early attention control, context updating, and response selection, respectively. Future research can use a variety of new paradigms to separate the neural mechanisms of BI and deinhibition.

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References
1.
Meiran N, Friedman G, Yehene E . Parkinson's disease is associated with goal setting deficits during task switching. Brain Cogn. 2004; 54(3):260-2. DOI: 10.1016/j.bandc.2004.02.043. View

2.
Dippel G, Beste C . A causal role of the right inferior frontal cortex in implementing strategies for multi-component behaviour. Nat Commun. 2015; 6:6587. DOI: 10.1038/ncomms7587. View

3.
Kopp B, Steinke A, Visalli A . Cognitive flexibility and N2/P3 event-related brain potentials. Sci Rep. 2020; 10(1):9859. PMC: 7299939. DOI: 10.1038/s41598-020-66781-5. View

4.
Wolff N, Giller F, Buse J, Roessner V, Beste C . When repetitive mental sets increase cognitive flexibility in adolescent obsessive-compulsive disorder. J Child Psychol Psychiatry. 2018; 59(9):1024-1032. DOI: 10.1111/jcpp.12901. View

5.
Greenberg J, Reiner K, Meiran N . "Off with the old": mindfulness practice improves backward inhibition. Front Psychol. 2013; 3:618. PMC: 3542708. DOI: 10.3389/fpsyg.2012.00618. View