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Bilingualism is a long-term cognitively challenging experience that modulates metabolite concentrations in the healthy brain

Christos Pliatsikas, Sergio Miguel Pereira Soares, Toms Voits, Vincent DeLuca, Jason Rothman

2021Scientific Reports33 citationsDOIOpen Access PDF

Abstract

Cognitively demanding experiences, including complex skill acquisition and processing, have been shown to induce brain adaptations, at least at the macroscopic level, e.g. on brain volume and/or functional connectivity. However, the neurobiological bases of these adaptations, including at the cellular level, are unclear and understudied. Here we use bilingualism as a case study to investigate the metabolic correlates of experience-based brain adaptations. We employ Magnetic Resonance Spectroscopy to measure metabolite concentrations in the basal ganglia, a region critical to language control which is reshaped by bilingualism. Our results show increased myo-Inositol and decreased N-acetyl aspartate concentrations in bilinguals compared to monolinguals. Both metabolites are linked to synaptic pruning, a process underlying experience-based brain restructuring. Interestingly, both concentrations correlate with relative amount of bilingual engagement. This suggests that degree of long-term cognitive experiences matters at the level of metabolic concentrations, which might accompany, if not drive, macroscopic brain adaptations.

Topics & Concepts

Neuroscience of multilingualismCognitionNeurosciencePsychologyMetaboliteBasal gangliaBiologyCognitive psychologyCentral nervous systemEndocrinologyNeurobiology of Language and BilingualismFunctional Brain Connectivity StudiesEpilepsy research and treatment
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