ENIGMA-Meditation: Worldwide Consortium for Neuroscientific Investigations of Meditation Practices.
Saampras Ganesan, Fernando A Barrios, Ishaan Batta, Clemens C C Bauer, Todd S Braver, Judson A Brewer, Kirk Warren Brown, Rael Cahn, Joshua A Cain, Vince D Calhoun, Lei Cao, Gaël Chételat, Christopher R K Ching, J David Creswell, Paulina Clara Dagnino, Svend Davanger, Richard J Davidson, Gustavo Deco, Janine M Dutcher, Anira Escrichs, Lisa T Eyler, Negar Fani, Norman A S Farb, Suruchi Fialoke, David M Fresco, Rahul Garg, Eric L Garland, Philippe Goldin, Danella M Hafeman, Neda Jahanshad, Yoona Kang, Sahib S Khalsa, Namik Kirlic, Sara W Lazar, Antoine Lutz, Timothy J Mcdermott, Giuseppe Pagnoni, Camille Piguet, Ruchika S Prakash, Hadley Rahrig, Nicco Reggente, Luigi F Saccaro, Matthew D Sacchet, Greg J Siegle, Yi-Yuan Tang, Sophia I Thomopoulos, Paul M Thompson, Alyssa Torske, Isaac N Treves, Vaibhav Tripathi, Aki Tsuchiyagaito, Matthew D Turner, David R Vago, Sofie Valk, Fadel Zeidan, Andrew Zalesky, Jessica A Turner, Anthony P King
Biological psychiatry. Cognitive neuroscience and neuroimaging April 1, 2025 DOI: 10.1016/j.bpsc.2024.10.015 via PubMed
Summary
AI-generated from the abstractMeditation practices, which have shown therapeutic benefits for conditions like depression, pain, addiction, and anxiety, have been studied with neuroimaging over the past decade. However, existing neuroscientific models are based on small, heterogeneous datasets, limiting generalizability and replicability. The ENIGMA-Meditation consortium is the first worldwide collaborative effort to conduct systematic meta- and mega-analyses of globally distributed neuroimaging data using standardized methods. This framework aims to improve statistical power and address multidomain heterogeneity in meditation practice types, experience, and experimental design. The consortium will generate rigorous neuroscientific insights into the mechanisms underlying meditation's therapeutic effects on psychological and cognitive attributes.
Study at a glance
| Characteristics | Consortium description and proposal for meta- and mega-analyses Peer reviewed |
|---|---|
| Topics | Meditation |
| Keywords | Consortium Enigma Neuroimaging |
| Citations | 6 |
| Key finding | The ENIGMA-Meditation consortium will enable systematic meta- and mega-analyses of globally distributed neuroimaging datasets using shared, standardized methods to improve statistical power and generalizability of neuroscientific models of meditation. |
Abstract
Meditation is a family of ancient and contemporary contemplative mind-body practices that can modulate psychological processes, awareness, and mental states. Over the last 40 years, clinical science has manualized meditation practices and designed various meditation interventions that have shown therapeutic efficacy for disorders including depression, pain, addiction, and anxiety. Over the past decade, neuroimaging has been used to examine the neuroscientific basis of meditation practices, effects, states, and outcomes for clinical and nonclinical populations. However, the generalizability and replicability of current neuroscientific models of meditation have not yet been established, because they are largely based on small datasets entrenched with heterogeneity along several domains of meditation (e.g., practice types, meditation experience, clinical disorder targeted), experimental design, and neuroimaging methods (e.g., preprocessing, analysis, task-based, resting-state, structural magnetic resonance imaging). These limitations have precluded a nuanced and rigorous neuroscientific phenotyping of meditation practices and their potential benefits. Here, we present ENIGMA (Enhancing Neuro Imaging Genetics through Meta Analysis)-Meditation, the first worldwide collaborative consortium for neuroscientific investigations of meditation practices. ENIGMA-Meditation will enable systematic meta- and mega-analyses of globally distributed neuroimaging datasets of meditation using shared, standardized neuroimaging methods and tools to improve statistical power and generalizability. Through this powerful collaborative framework, existing neuroscientific accounts of meditation practices can be extended to generate novel and rigorous neuroscientific insights that account for multidomain heterogeneity. ENIGMA-Meditation will inform neuroscientific mechanisms that underlie therapeutic action of meditation practices on psychological and cognitive attributes, thereby advancing the field of meditation and contemplative neuroscience.