Arousal and salience network connectivity alterations in surgical temporal lobe epilepsy

Author:

González Hernán F. J.12,Narasimhan Saramati32,Goodale Sarah E.12,Johnson Graham W.12,Doss Derek J.12,Paulo Danika L.3,Morgan Victoria L.1342,Chang Catie152,Englot Dario J.15342

Affiliation:

1. Departments of Biomedical Engineering and

2. Vanderbilt University Institute of Imaging Science, Vanderbilt University Medical Center, Nashville, Tennessee

3. Departments of Neurological Surgery and

4. Radiology and Radiological Sciences and

5. Electrical Engineering and Computer Science, Vanderbilt University, Nashville, Tennessee;

Abstract

OBJECTIVE It is poorly understood why patients with mesial temporal lobe epilepsy (TLE) have cognitive deficits and brain network changes that extend beyond the temporal lobe, including altered extratemporal intrinsic connectivity networks (ICNs). However, subcortical arousal structures project broadly to the neocortex, are affected by TLE, and thus may contribute to these widespread network effects. The authors’ objective was to examine functional connectivity (FC) patterns between subcortical arousal structures and neocortical ICNs, possible neurocognitive relationships, and FC changes after epilepsy surgery. METHODS The authors obtained resting-state functional magnetic resonance imaging (fMRI) in 50 adults with TLE and 50 controls. They compared nondirected FC (correlation) and directed FC (Granger causality laterality index) within the salience network, default mode network, and central executive network, as well as between subcortical arousal structures; these 3 ICNs were also compared between patients and controls. They also used an fMRI-based vigilance index to relate alertness to arousal center FC. Finally, fMRI was repeated in 29 patients > 12 months after temporal lobe resection. RESULTS Nondirected FC within the salience (p = 0.042) and default mode (p = 0.0008) networks, but not the central executive network (p = 0.79), was decreased in patients in comparison with controls (t-tests, corrected). Nondirected FC between the salience network and subcortical arousal structures (nucleus basalis of Meynert, thalamic centromedian nucleus, and brainstem pedunculopontine nucleus) was reduced in patients in comparison with controls (p = 0.0028–0.015, t-tests, corrected), and some of these connectivity abnormalities were associated with lower processing speed index, verbal comprehension, and full-scale IQ. Interestingly, directed connectivity measures suggested a loss of top-down influence from the salience network to the arousal nuclei in patients. After resection, certain FC patterns between the arousal nuclei and salience network moved toward control values in the patients, suggesting that some postoperative recovery may be possible. Although an fMRI-based vigilance measure suggested that patients exhibited reduced alertness over time, FC abnormalities between the salience network and arousal structures were not influenced by the alertness levels during the scans. CONCLUSIONS FC abnormalities between subcortical arousal structures and ICNs, such as the salience network, may be related to certain neurocognitive deficits in TLE patients. Although TLE patients demonstrated vigilance abnormalities, baseline FC perturbations between the arousal and salience networks are unlikely to be driven solely by alertness level, and some may improve after surgery. Examination of the arousal network and ICN disturbances may improve our understanding of the downstream clinical effects of TLE.

Publisher

Journal of Neurosurgery Publishing Group (JNSPG)

Subject

Genetics,Animal Science and Zoology

Reference45 articles.

1. Regional and global connectivity disturbances in focal epilepsy, related neurocognitive sequelae, and potential mechanistic underpinnings;Englot DJ,2016

2. The neurobiology of cognitive disorders in temporal lobe epilepsy;Bell B,2011

3. Brainstem atrophy in focal epilepsy destabilizes brainstem-brain interactions: preliminary findings;Mueller SG,2019

4. Sleep before and after temporal lobe epilepsy surgery;Serafini A,2012

5. Impaired vigilance networks in temporal lobe epilepsy: mechanisms and clinical implications;Englot DJ,2020

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