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The Neurodynamic Core of Meditation: Dissociating Meditation from Rest and Task in a Reliability-based EEG study

Praerna Chowdhury, Ramajayam Govindaraj, Arun Sasidharan, Apar A Saoji, N Ravindra P, Georg Northoff, Bindu M Kutty

bioRxiv Preprint Server May 27, 2026 preprint DOI: 10.64898/2026.05.27.728082 via bioRxiv

Summary

AI-generated from the abstract

Meditation-related EEG patterns are often studied by comparing meditators to passive rest or by experience level, but such designs rarely test reliability or include active controls. This study used a multi-session within-subject design with experienced Brahmakumaris Rajayoga meditators to identify reliable, state-dependent EEG dynamics. The approach addressed prior limitations, providing more valid neurophysiological markers of meditative state.

Study at a glance

Characteristics Multi-session within-subject design
Population Experienced meditators from the Brahmakumaris Rajayoga tradition
Intervention meditation
Key finding The study identified reliable, state-dependent EEG dynamics that distinguish meditative state from other states, addressing prior limitations in meditation research.

Abstract

Background Electroencephalographic (EEG) studies attempting to characterise the neural signature of meditation typically rely on contrasts with passive rest or comparisons among practitioners based on experience. However, these approaches rarely include active control states and seldom establish the reliability and robustness of identified quantitative EEG features. Consequently, the validity of proposed neurophysiological markers of meditative state remains uncertain. The present study addressed these limitations by using a reliability-informed, multi-session within-subject design to characterise distinct state-dependent EEG dynamics in experienced meditators from the Brahmakumaris Rajayoga tradition.

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