Skip to content

Functional neuroanatomy of meditation: A review and meta-analysis of 78 functional neuroimaging investigations

Kieran C. R. Fox, Matthew L. Dixon, Savannah Nijeboer, Manesh Girn, James L. Floman, Michael Lifshitz, Melissa Ellamil, Peter Sedlmeier, Kalina Christoff

arXiv Preprint Archive March 21, 2016 preprint

Study at a glance

AI-extracted from the abstract
Characteristics Systematic review and meta-analysis
Sample size 527
Population Meditation practitioners from functional neuroimaging studies
Interventions mantra recitation visualization non-dual awareness practices
Topics Meditation
Keywords Q-bio.nc Meditation neuroscience mindfulness Neural meditation Cognitive science neurobiology Brain research Psychological practice Brain training
Key findings Four common meditation styles show reliably dissociable brain activation patterns consistent with their psychological aims, with medium effect sizes for activations and deactivations.

Abstract

Meditation is a family of mental practices that encompasses a wide array of techniques employing distinctive mental strategies. We systematically reviewed 78 functional neuroimaging (fMRI and PET) studies of meditation, and used activation likelihood estimation to meta-analyze 257 peak foci from 31 experiments involving 527 participants. We found reliably dissociable patterns of brain activation and deactivation for four common styles of meditation (focused attention, mantra recitation, open monitoring, and compassion/loving-kindness), and suggestive differences for three others (visualization, sense-withdrawal, and non-dual awareness practices). Overall, dissociable activation patterns are congruent with the psychological and behavioral aims of each practice. Some brain areas are recruited consistently across multiple techniques - including insula, pre/supplementary motor cortices, dorsal anterior cingulate cortex, and frontopolar cortex - but convergence is the exception rather than the rule. A preliminary effect-size meta-analysis found medium effects for both activations (d = .59) and deactivations (d = -.74), suggesting potential practical significance. Our meta-analysis supports the neurophysiological dissociability of meditation practices, but also raises many methodological concerns and suggests avenues for future research.

Explore topics