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fMRI-based explanations for how meditation could modulate pain processing.

Faly Golshan, Marla J S Mickleborough

Frontiers in neuroscience January 1, 2025 DOI: 10.3389/fnins.2025.1561580 via PubMed

Summary

AI-generated from the abstract

Meditation alters brain activity in response to both acute and chronic pain, as shown by fMRI studies. The review categorizes general models of how meditation changes cortical responses in naïve and expert practitioners. It discusses three major components of pain processing and how meditation affects each stage, identifies key brain regions consistently involved in pain modulation through meditation, and proposes a framework for differentiating meditation techniques based on their distinct effects on pain experiences. These insights have implications for using various meditation techniques in pain management, especially for chronic conditions.

Study at a glance

Characteristics Review Peer reviewed
Topics Meditation
Keywords Acute noxious pain Chronic pain FMRI Focused attention Open monitoring
Citations 4
Key finding Meditation influences brain activity in response to acute and chronic pain through distinct neurophysiological mechanisms that can be categorized by technique and practitioner experience.

Abstract

Meditation is a widely recognized umbrella term encompassing a diverse range of techniques with shared foundational characteristics, celebrated for their potential to alleviate mental and physical challenges. While subjective reports and behavioral studies have long highlighted meditation's benefits, recent neuroscientific research has sought to provide tangible physiological evidence of its efficacy as a non-invasive intervention for managing physical pain. This review examines the neurophysiological mechanisms by which meditation influences brain activity in response to both acute and chronic pain experiences. Drawing on findings from functional magnetic resonance imaging (fMRI) studies, general models are categorized to explain how meditation alters cortical responses in both naïve and expert practitioners when exposed to pain stimuli. First, we discuss three major components of pain processing in the brain and analyze how meditation affects each stage. Next, we identify key brain regions consistently implicated in pain modulation through meditation, elucidating their roles in pain perception and regulation. Finally, we propose a framework for differentiating meditation techniques based on their distinct effects on pain experiences. These insights have significant implications for understanding the therapeutic potential of various meditation techniques for pain management, particularly in chronic conditions.

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