Literature DB >> 33503877

The Effects of Working Memory Training on Brain Activity.

Edward Nęcka1, Aleksandra Gruszka1, Adam Hampshire2, Justyna Sarzyńska-Wawer3, Andreea-Elena Anicai2, Jarosław Orzechowski4, Michał Nowak1, Natalia Wójcik1, Stefano Sandrone2, Eyal Soreq2.   

Abstract

This study aimed to investigate if two weeks of working memory (WM) training on a progressive N-back task can generate changes in the activity of the underlying WM neural network. Forty-six healthy volunteers (23 training and 23 controls) were asked to perform the N-back task during three fMRI scanning sessions: (1) before training, (2) after the half of training sessions, and (3) at the end. Between the scanning sessions, the experimental group underwent a 10-session training of working memory with the use of an adaptive version of the N-back task, while the control group did not train anything. The N-back task in the scanning sessions was relatively easy (n = 2) in order to ensure high accuracy and a lack of between-group differences at the behavioral level. Such training-induced differences in neural efficiency were expected. Behavioral analyses revealed improved performance of both groups on the N-back task. However, these improvements resulted from the test-retest effect, not the training outside scanner. Performance on the non-trained stop-signal task did not demonstrate any transfer effect. Imaging analysis showed changes in activation in several significant clusters, with overlapping regions of interest in the frontal and parietal lobes. However, patterns of between-session changes of activation did not show any effect of training. The only finding that can be linked with training consists in strengthening the correlation between task performance accuracy and activation of the parietal regions of the neural network subserving working memory (left superior parietal lobule and right supramarginal gyrus posterior). These results suggest that the effects of WM training consist in learning that, in order to ensure high accuracy in the criterion task, activation of the parietal regions implicated in working memory updating must rise.

Entities:  

Keywords:  N-back task; neural efficiency; stop-signal task; training; working memory

Year:  2021        PMID: 33503877      PMCID: PMC7911688          DOI: 10.3390/brainsci11020155

Source DB:  PubMed          Journal:  Brain Sci        ISSN: 2076-3425


  57 in total

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Review 9.  Do "Brain-Training" Programs Work?

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