Localization of Brain Networks Engaged by the Sustained Attention to Response Task Provides Quantitative Markers of Executive Impairment in Amyotrophic Lateral Sclerosis

Author:

McMackin Roisin1ORCID,Dukic Stefan12,Costello Emmet1,Pinto-Grau Marta13,Fasano Antonio1,Buxo Teresa1,Heverin Mark1,Reilly Richard45,Muthuraman Muthuraman6ORCID,Pender Niall13,Hardiman Orla17,Nasseroleslami Bahman1

Affiliation:

1. Academic Unit of Neurology, Trinity College Dublin, The University of Dublin, Dublin, D02 R590, Ireland

2. Department of Neurology, Brain Center Rudolf Magnus, University Medical Center Utrecht, 3584 CX Utrecht, The Netherlands

3. Beaumont Hospital Dublin, Department of Psychology, Dublin 9, Dublin, Ireland

4. Trinity College Institute of Neuroscience, Trinity College Dublin, The University of Dublin, Dublin 2, Dublin, Ireland

5. Trinity Centre for Biomedical Engineering, Trinity College, The University of Dublin, Dublin 2, Dublin, Ireland

6. Biomedical Statistics and Multimodal Signal Processing Unit, Department of Neurology, Johannes-Gutenberg- University Hospital, D55131, Mainz, Germany

7. Department of Neurology, Beaumont Hospital Dublin, Dublin 9, Dublin, Ireland

Abstract

Abstract Objective: To identify cortical regions engaged during the sustained attention to response task (SART) and characterize changes in their activity associated with the neurodegenerative condition amyotrophic lateral sclerosis (ALS). Methods: High-density electroencephalography (EEG) was recorded from 33 controls and 23 ALS patients during a SART paradigm. Differences in associated event-related potential peaks were measured for Go and NoGo trials. Sources active during these peaks were localized, and ALS-associated differences were quantified. Results: Go and NoGo N2 and P3 peak sources were localized to the left primary motor cortex, bilateral dorsolateral prefrontal cortex (DLPFC), and lateral posterior parietal cortex (PPC). NoGo trials evoked greater bilateral medial PPC activity during N2 and lesser left insular, PPC and DLPFC activity during P3. Widespread cortical hyperactivity was identified in ALS during P3. Changes in the inferior parietal lobule and insular activity provided very good discrimination (AUROC > 0.75) between patients and controls. Activation of the right precuneus during P3 related to greater executive function in ALS, indicative of a compensatory role. Interpretation: The SART engages numerous frontal and parietal cortical structures. SART–EEG measures correlate with specific cognitive impairments that can be localized to specific structures, aiding in differential diagnosis.

Funder

Boehringer Ingelheim Fonds

Transregional Collaborative Research Center

Motor Neurone Disease Association

Thierry Latran Foundation

Research Motor Neurone

Science Foundation Ireland

Health Research Board

Irish Research Council

Publisher

Oxford University Press (OUP)

Subject

Cellular and Molecular Neuroscience,Cognitive Neuroscience

Reference48 articles.

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