Brain Network Dysfunction in Poststroke Delirium and Spatial Neglect: An fMRI Study

Author:

Boukrina Olga12ORCID,Kowalczyk Mateusz3ORCID,Koush Yury245,Kong Yekyung,Barrett A.M.67ORCID

Affiliation:

1. Center for Stroke Rehabilitation Research, Kessler Foundation, West Orange, NJ (O.B.).

2. Department of Physical Medicine and Rehabilitation, Rutgers-New Jersey Medical School, Newark (O.B., Y.K.).

3. Rocco Ortenzio Neuroimaging Center, Kessler Foundation, West Orange, NJ (M.K.).

4. Magnetic Resonance Research Center, Yale School of Medicine, New Haven, CT (Y.K.).

5. Kessler Institute for Rehabilitation, West Orange, NJ (Y.K.).

6. Center for Visual and Neurocognitive Rehabilitation, Atlanta VA Medical Center, Decatur, GA (A.M.B.).

7. Department of Neurology, Emory University School of Medicine, Atlanta, GA (A.M.B.).

Abstract

Background and Purpose: Delirium, an acute reduction in cognitive functioning, hinders stroke recovery and contributes to cognitive decline. Right-hemisphere stroke is linked with higher delirium incidence, likely, due to the prevalence of spatial neglect (SN), a right-brain disorder of spatial processing. This study tested if symptoms of delirium and SN after right-hemisphere stroke are associated with abnormal function of the right-dominant neural networks specialized for maintaining attention, orientation, and arousal. Methods: Twenty-nine participants with right-hemisphere ischemic stroke undergoing acute rehabilitation completed delirium and SN assessments and functional neuroimaging scans. Whole-brain functional connectivity of 4 right-hemisphere seed regions in the cortical-subcortical arousal and attention networks was assessed for its relationship to validated SN and delirium severity measures. Results: Of 29 patients, 6 (21%) met the diagnostic criteria for delirium and 16 (55%) for SN. Decreased connectivity of the right basal forebrain to brain stem and basal ganglia predicted more severe SN. Increased connectivity of the arousal and attention network regions with the parietal, frontal, and temporal structures in the unaffected hemisphere was also found in more severe delirium and SN. Conclusions: Delirium and SN are associated with decreased arousal network activity and an imbalance of cortico-subcortical hemispheric connectivity. Better understanding of neural correlates of poststroke delirium and SN will lead to improved neuroscience-based treatment development for these disorders.

Publisher

Ovid Technologies (Wolters Kluwer Health)

Subject

Advanced and Specialized Nursing,Cardiology and Cardiovascular Medicine,Neurology (clinical)

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