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Effects of web-based mindfulness training on psychological outcomes, attention, and neuroplasticity.

María Guadalupe Mora Álvarez, Britta Karen Hölzel, Benno Bremer, Maximilian Wilhelm, Elena Hell, Ebru Ecem Tavacioglu, Kathrin Koch, Alyssa Torske

Scientific reports December 19, 2023 DOI: 10.1038/s41598-023-48706-0 via PubMed

Summary

AI-generated from the abstract

A 31-day web-based mindfulness meditation training reduced perceived stress and anxiety and improved overall reaction time on an attention test, though no specific attentional components were affected. The training also increased flow experiences. Brain imaging showed increased activity in the superior frontal gyrus, posterior cingulate cortex, and right hippocampus during an alerting task, and decreased stress and anxiety correlated with right hippocampus activation. Increased flow correlated with activity in all those areas. Diffusion imaging revealed improved white matter microstructure in the right uncinate fasciculus, linking the right hippocampus to frontal areas. An active control group showed no significant changes.

Study at a glance

Characteristics Randomized controlled trial Peer reviewed
Sample size 118
Population Healthy, meditation-naïve adults
Interventions Mindfulness meditation training Health training
Duration 31-day intervention
Citations 19
Key finding Web-based mindfulness meditation training reduced stress and anxiety, improved overall reaction time, increased flow experience, and induced neuroplastic changes in brain regions related to attention and emotion regulation.

Abstract

Mindfulness meditation training (MMT) reliably reduces stress and anxiety while also improving attention. The primary aim of this study was to investigate the relationship between MMT, stress and anxiety reduction, and its impact upon improvements in attention on the behavioral and neuronal levels. As a second aim, we sought to explore any relationship between MMT, attention, and modified states of mind such as flow. 118 healthy, meditation-naïve, participants were either assigned to a 31-day, web-based, MMT or an active control, health training (HT). Participants underwent functional magnetic resonance imaging while performing the attention network test (ANT) to assess functional and behavioural attentional changes, diffusion tensor imaging (DTI) to assess microstructural neuronal changes and completed relevant questionnaires to explore changes in psychological outcomes. Results confirmed a reduction in perceived stress and anxiety levels in the MMT group and significant improvements in the overall reaction time during the ANT, albeit no specific effects on the attentional components were observed. No statistically significant changes were found in the HT group. Interestingly, a significant group-by-time interaction was seen in flow experience. Functional data exhibited an increased activity in the superior frontal gyrus, posterior cingulate cortex, and right hippocampus during the alerting condition of the ANT after the MMT; decreased stress and trait anxiety were significantly correlated with the activation in the right hippocampus, and increased flow was also significantly correlated with all the aforementioned areas. DTI data showed increased fractional anisotropy values in the right uncinate fasciculus indicating white matter microarchitecture improvement between the right hippocampus and frontal areas of the brain. This study, therefore, demonstrates the effectiveness of web-based MMT on overall well-being and attentional performance, while also providing insight into the relationship between psychological outcomes, attention, and neuroplastic changes.

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