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Magnetoencephalographic alpha band connectivity reveals differential default mode network interactions during focused attention and open monitoring meditation.

Laura Marzetti, Claudia Di Lanzo, Filippo Zappasodi, Federico Chella, Antonino Raffone, Vittorio Pizzella

Frontiers in Human Neuroscience January 1, 2014 DOI: 10.3389/fnhum.2014.00832 (opens in new tab) via PubMed

Summary

AI-generated from the abstract

In expert Theravada Buddhist monks with long-term training, magnetoencephalography revealed that focused attention and open monitoring meditation differently alter the coupling of the posterior cingulate cortex—a key node of the default mode network involved in self-related processing and mind wandering—with other brain regions in the alpha frequency band (8–12 Hz). Focused attention and open monitoring meditation each produced distinct patterns of connectivity between the posterior cingulate cortex and nodes of the default mode network and executive control network.

Study at a glance

Characteristics Observational study Peer reviewed
Population Theravada Buddhist monks with long-term meditation training
Intervention open monitoring meditation
Topics Default mode network Meditation
Keywords Brain rhythms Magnetoencephalography
Key finding Focused attention and open monitoring meditation produce distinct patterns of alpha-band coupling between the posterior cingulate cortex and default mode and executive control networks, with expertise-related differences in connectivity.

Abstract

According to several conceptualizations of meditation, the interplay between brain systems associated to self-related processing, attention and executive control is crucial for meditative states and related traits. We used magnetoencephalography (MEG) to investigate such interplay in a highly selected group of "virtuoso" meditators (Theravada Buddhist monks), with long-term training in the two main meditation styles: focused attention (FA) and open monitoring (OM) meditation. Specifically, we investigated the differences between FA meditation, OM meditation and resting state in the coupling between the posterior cingulate cortex, core node of the Default Mode Network (DMN) implicated in mind wandering and self-related processing, and the whole brain, with a recently developed phase coherence approach. Our findings showed a state dependent coupling of posterior cingulate cortex (PCC) to nodes of the DMN and of the executive control brain network in the alpha frequency band (8-12 Hz), related to different attentional and cognitive control processes in FA and OM meditation, consistently with the putative role of alpha band synchronization in the functional mechanisms for attention and consciousness. The coupling of PCC with left medial prefrontal cortex (lmPFC) and superior frontal gyrus characterized the contrast between the two meditation styles in a way that correlated with meditation expertise. These correlations may be related to a higher mindful observing ability and a reduced identification with ongoing mental activity in more expert meditators. Notably, different styles of meditation and different meditation expertise appeared to modulate the dynamic balance between fronto-parietal (FP) and DMN networks. Our results support the idea that the interplay between the DMN and the FP network in the alpha band is crucial for the transition from resting state to different meditative states.

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