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Enhancing Equanimity With Noninvasive Brain Stimulation: A Novel Framework for Mindfulness Interventions.

Brian Lord, John J B Allen, Shinzen Young, Joseph L Sanguinetti

Biological psychiatry. Cognitive neuroscience and neuroimaging April 1, 2025 DOI: 10.1016/j.bpsc.2024.12.005 via PubMed

Summary

AI-generated from the abstract

Mindfulness benefits mental health and cognition through a combination of top-down attention and bottom-up emotional processes, with equanimity—the ability to maintain an open, nonreactive attitude toward all experiences—driving many of these benefits. Noninvasive brain stimulation (NIBS) can alter neural circuits involved in mindfulness, but most studies have focused on cognitive control rather than equanimity. Preliminary findings using focused ultrasound on the posterior cingulate cortex suggest NIBS can directly facilitate equanimity by inhibiting self-referential processing in the default mode network, promoting a more present-centered state. Future research should integrate NIBS with mindfulness training, targeting equanimity to advance contemplative neuroscience and develop individualized wellness interventions.

Study at a glance

Characteristics Review Peer reviewed
Topics Default mode network Meditation
Keywords Cognitive control Emotional regulation Equanimity
Citations 4
Key finding Equanimity is a core component underlying mindfulness benefits, and noninvasive brain stimulation targeting the posterior cingulate cortex may directly facilitate equanimity by inhibiting default mode network self-referential processing.

Abstract

Mindfulness has gained widespread recognition for its benefits for mental health, cognitive performance, and well-being. However, the multifaceted nature of mindfulness, which encompasses elements such as attentional focus, emotional regulation, and present-moment awareness, complicates its definition and measurement. A key component that may underlie its broad benefits is equanimity-the ability to maintain an open and nonreactive attitude toward all sensory experiences. Empirical research suggests that mindfulness works through a combination of top-down attentional control and bottom-up sensory and emotional processes and that equanimity's role in regulating those bottom-up processes drives the psychological and physiological benefits, making it a promising target for both theoretical and practical exploration. Given these findings, the development of interventions that specifically augment equanimity could improve the impact of mindfulness practices. Research into noninvasive brain stimulation (NIBS) suggests that it is a potential tool for altering neural circuits involved in mindfulness. However, most NIBS studies reported to date have focused on improving cognitive control systems and have left equanimity relatively unexplored. Preliminary findings from focused ultrasound interventions targeting the posterior cingulate cortex suggest that NIBS can directly facilitate equanimity by inhibiting self-referential processing in the default mode network to promote a more present-centered state of awareness. Future research should prioritize the integration of NIBS with well-defined mindfulness training protocols, focusing on equanimity as a core target. This approach could provide a novel framework for advancing both contemplative neuroscience and clinical applications, offering new insights into the mechanisms of mindfulness and refining NIBS methodologies to support individualized, precision wellness interventions.

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