Attention and Default Mode Network Assessments of Meditation Experience during Active Cognition and Rest.
Kathryn J Devaney, Emily J Levin, Vaibhav Tripathi, James P Higgins, Sara W. Lazar, David C Somers
Brain Sciences April 29, 2021 DOI: 10.3390/brainsci11050566 (opens in new tab) via PubMed
Summary
AI-generated from the abstractExperienced Vipassana meditators show stronger anticorrelation between the dorsal attention network and the default mode network during both sustained attention tasks and at rest, compared to matched controls and a larger reference dataset. This pattern, previously linked to better brain health, indicates more stable sustained attention without increased distractibility. No differences were observed between meditators and controls in an attentional reorienting task. The findings, based on functional MRI, suggest that long-term meditation practice may enhance the brain's ability to maintain focused attention by strengthening the separation between attention and default mode networks.
Study at a glance
| Characteristics | Observational cohort Peer reviewed |
|---|---|
| Population | Experienced focused attention Vipassana meditators and matched controls |
| Topics | Default mode network Meditation |
| Keywords | Cognition Dorsal attention network FMRI |
| Key finding | Meditators showed increased magnitude of anticorrelation between dorsal attention and default mode networks during sustained attention and at rest, relative to controls. |
Abstract
Meditation experience has previously been shown to improve performance on behavioral assessments of attention, but the neural bases of this improvement are unknown. Two prominent, strongly competing networks exist in the human cortex: a dorsal attention network, that is activated during focused attention, and a default mode network, that is suppressed during attentionally demanding tasks. Prior studies suggest that strong anti-correlations between these networks indicate good brain health. In addition, a third network, a ventral attention network, serves as a "circuit-breaker" that transiently disrupts and redirects focused attention to permit salient stimuli to capture attention. Here, we used functional magnetic resonance imaging to contrast cortical network activation between experienced focused attention Vipassana meditators and matched controls. Participants performed two attention tasks during scanning: a sustained attention task and an attention-capture task. Meditators demonstrated increased magnitude of differential activation in the dorsal attention vs. default mode network in a sustained attention task, relative to controls. In contrast, there were no evident attention network differences between meditators and controls in an attentional reorienting paradigm. A resting state functional connectivity analysis revealed a greater magnitude of anticorrelation between dorsal attention and default mode networks in the meditators as compared to both our local control group and a n = 168 Human Connectome Project dataset. These results demonstrate, with both task- and rest-based fMRI data, increased stability in sustained attention processes without an associated attentional capture cost in meditators. Task and resting-state results, which revealed stronger anticorrelations between dorsal attention and default mode networks in experienced mediators than in controls, are consistent with a brain health benefit of long-term meditation practice.