Within-subject reliability of brain networks during advanced meditation: An intensively sampled 7 Tesla MRI case study.
Saampras Ganesan, Winson F Z Yang, Avijit Chowdhury, Andrew Zalesky, Matthew D Sacchet
Human brain mapping May 1, 2024 DOI: 10.1002/hbm.26666 via PubMed
Summary
AI-generated from the abstractIn an adept practitioner performing jhana meditation over 5 days inside a 7 Tesla MRI scanner (27 runs), the thalamus and several cortical networks—somatomotor, limbic, default-mode, control, and temporo-parietal—showed good within-subject reliability across all jhanas. When fMRI measurements were adjusted for variability in self-reported phenomenology, other networks such as attention and salience showed noticeable increases in reliability. The findings provide a preliminary template of reliable brain areas likely underpinning core neurocognitive elements of jhana meditation and highlight the value of neurophenomenological designs for characterizing neuronal variability in advanced meditative states.
Study at a glance
| Characteristics | Within-subject reliability study Case report Peer reviewed |
|---|---|
| Sample size | 1 |
| Population | Adept practitioner of jhana meditation |
| Intervention | Jhana meditation |
| Duration | 5 days (27 fMRI runs) |
| Keywords | Advanced meditation Consciousness Intraclass correlation icc Jhana Neurophenomenology |
| Citations | 23 |
| Key finding | Thalamus and several cortical networks demonstrated good within-subject reliability across all jhanas, and adjusting for self-reported phenomenology increased reliability in attention and salience networks. |
Abstract
Advanced meditation such as jhana meditation can produce various altered states of consciousness (jhanas) and cultivate rewarding psychological qualities including joy, peace, compassion, and attentional stability. Mapping the neurobiological substrates of jhana meditation can inform the development and application of advanced meditation to enhance well-being. Only two prior studies have attempted to investigate the neural correlates of jhana meditation, and the rarity of adept practitioners has largely restricted the size and extent of these studies. Therefore, examining the consistency and reliability of observed brain responses associated with jhana meditation can be valuable. In this study, we aimed to characterize functional magnetic resonance imaging (fMRI) reliability within a single subject over repeated runs in canonical brain networks during jhana meditation performed by an adept practitioner over 5 days (27 fMRI runs) inside an ultra-high field 7 Tesla MRI scanner. We found that thalamus and several cortical networks, that is, the somatomotor, limbic, default-mode, control, and temporo-parietal, demonstrated good within-subject reliability across all jhanas. Additionally, we found that several other relevant brain networks (e.g., attention, salience) showed noticeable increases in reliability when fMRI measurements were adjusted for variability in self-reported phenomenology related to jhana meditation. Overall, we present a preliminary template of reliable brain areas likely underpinning core neurocognitive elements of jhana meditation, and highlight the utility of neurophenomenological experimental designs for better characterizing neuronal variability associated with advanced meditative states.