Abstract Introduction Prolonged wakefulness disrupts the brain’s capacity to maintain uniform arousal, giving rise to “local sleep” events in which cortical regions transiently exhibit sleep-like activity. Resulting unstable wakefulness reflects a breakdown in network stability and has been linked to impaired cognition and reduced vigilance. This study examined regional connectivity across a period of overnight sleep deprivation to determine whether changes in localized hemodynamic signals represent a hallmark of a sleep deprivation. Methods Individuals were recruited from the central Tucson area using fliers and online advertisements (n = 20). Interested participants completed an online screener to select for self-reported healthy sleep patterns and no current neurologic conditions or mental illnesses. Sleep deprivation took place over 39-hours with seven resting-state MRI. Polysomnography was recorded for baseline and recovery sleep-episodes. Functional data were analyzed and preprocessed using the MATLAB toolbox CONN (22. v). Local correlation (LCOR) represents a weighted average of nearby connections (10 mm Gaussian area), computed from the matrix of bivariate correlation coefficients estimated using a singular value decomposition of z-score normalized signals, reflecting local coherence. Results Over sleep deprivation, significant increases in LCOR occurred in large-scale cortical areas, primarily within the somatosensory and visual networks (T = 9. 9, p. 01). LCOR cluster maxima were localized within the thalamus (Z = 6. 1; p. 01), postcentral gyri (Z = 5. 94; p. 01), and superior temporal gyri (Z = 6. 0; p. 01). A secondary analysis at 37-hour sleep deprivation revealed a negative association between subsequent N3 (% total sleep time) and LCOR in the brainstem, centered at MNI (–4, –32, –52), extending adjacent to the pontine cistern (β = -0. 77; p. 01; R² =. 56). Conclusion Progressive sleep deprivation was associated with increased LCOR, primarily within the somatosensory and visual networks. Increased LCOR may reflect enhanced slow or infra-slow neuronal oscillatory activity. Prior to recovery sleep, LCOR in a region of the brainstem and pontine cistern was negatively associated with N3 (% total sleep time). Given the proximity to CSF, physiological artifacts related to pulsatile fluid dynamics cannot be excluded. Support (if any) Army Research Office award W911NF2210223.
Negelspach et al. (Fri,) studied this question.
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