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A computational approach to understanding the longitudinal changes in cortical activity associated with intensive meditation training

Manish Saggar, Stephen R Aichele, Tonya L Jacobs, Anthony P Zanesco, David A Bridwell, Katherine A Maclean, Brandon G King, Baljinder K Sahdra, Erika L Rosenberg, Phillip R Shaver, Emilio Ferrer, B Alan Wallace, George R Mangun, Clifford D Saron, Risto Miikkulainen

BMC Neurosci 2010 DOI: 10.1186/1471-2202-11-s1-o7 (opens in new tab)

Study at a glance

AI-extracted from the abstract
Characteristics Computational analysis Longitudinal Peer reviewed
Intervention Intensive meditation training
Topics Meditation Neuroplasticity
Keywords Intensive meditation Dedicated meditation training Reshape the brain Neuroscience research Researchers Advanced computational methods Enhancing neural well-being Positive longitudinal changes Beneficially modify.
Citations 50
Key points Intensive meditation training leads to lasting alterations in cortical activity patterns that beneficially modify brain function.

Abstract

A computational approach to understanding the longitudinal changes in cortical activity associated with intensive meditation training

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