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Multidimensional inhibitory signatures of sentential negation in behavioral variant frontotemporal dementia

Authors :
Mariano N Díaz-Rivera
Agustina Birba
Sol Fittipaldi
Débora Mola
Yurena Morera
Manuel de Vega
Sebastian Moguilner
Patricia Lillo
Andrea Slachevsky
Cecilia González Campo
Agustín Ibáñez
Adolfo M García
Source :
Cereb Cortex
Publication Year :
2022
Publisher :
Oxford University Press (OUP), 2022.

Abstract

Background Processing of linguistic negation has been associated to inhibitory brain mechanisms. However, no study has tapped this link via multimodal measures in patients with core inhibitory alterations, a critical approach to reveal direct neural correlates and potential disease markers. Methods Here we examined oscillatory, neuroanatomical, and functional connectivity signatures of a recently reported Go/No-go negation task in healthy controls and behavioral variant frontotemporal dementia (bvFTD) patients, typified by primary and generalized inhibitory disruptions. To test for specificity, we also recruited persons with Alzheimer's disease (AD), a disease involving frequent but nonprimary inhibitory deficits. Results In controls, negative sentences in the No-go condition distinctly involved frontocentral delta (2–3 Hz) suppression, a canonical inhibitory marker. In bvFTD patients, this modulation was selectively abolished and significantly correlated with the volume and functional connectivity of regions supporting inhibition (e.g. precentral gyrus, caudate nucleus, and cerebellum). Such canonical delta suppression was preserved in the AD group and associated with widespread anatomo-functional patterns across non-inhibitory regions. Discussion These findings suggest that negation hinges on the integrity and interaction of spatiotemporal inhibitory mechanisms. Moreover, our results reveal potential neurocognitive markers of bvFTD, opening a new agenda at the crossing of cognitive neuroscience and behavioral neurology.

Details

ISSN :
14602199 and 10473211
Volume :
33
Database :
OpenAIRE
Journal :
Cerebral Cortex
Accession number :
edsair.doi.dedup.....f236f50230f5bb2d03363517f47f97c4