4.6 Article

Variability in Cumulative Habitual Sleep Duration Predicts Waking Functional Connectivity

Journal

SLEEP
Volume 39, Issue 1, Pages 87-95

Publisher

OXFORD UNIV PRESS INC
DOI: 10.5665/sleep.5324

Keywords

central executive network; DMN; salience network; functional connectivity; fMRI; habitual total sleep time; sleep; sleep quality

Funding

  1. UK Engineering and Physical Sciences Research Council [EP/J002909/1]
  2. EPSRC [EP/I022325/1]
  3. Birmingham University Fellowship
  4. UCB
  5. Eisai
  6. Cyberonics
  7. Engineering and Physical Sciences Research Council [EP/J002909/1, EP/I022325/1] Funding Source: researchfish
  8. EPSRC [EP/J002909/1] Funding Source: UKRI

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Study Objectives: We examined whether interindividual differences in habitual sleep patterns, quantified as the cumulative habitual total sleep time (cTST) over a 2-w period, were reflected in waking measurements of intranetwork and internetwork functional connectivity (FC) between major nodes of three intrinsically connected networks (ICNs): default mode network (DMN), salience network (SN), and central executive network (CEN). Methods: Resting state functional magnetic resonance imaging (fMRI) study using seed-based FC analysis combined with 14-d wrist actigraphy, sleep diaries, and subjective questionnaires (N = 33 healthy adults, mean age 34.3, standard deviation +/- 11.6 y). Data were statistically analyzed using multiple linear regression. Fourteen consecutive days of wrist actigraphy in participant's home environment and fMRI scanning on day 14 at the Birmingham University Imaging Centre. Seed-based FC analysis on ICNs from resting-state fMRI data and multiple linear regression analysis performed for each ICN seed and target. cTST was used to predict FC (controlling for age). Results: cTST was specific predictor of intranetwork FC when the mesial prefrontal cortex (MPFC) region of the DMN was used as a seed for FC, with a positive correlation between FC and cTST observed. No significant relationship between FC and cTST was seen for any pair of nodes not including the MPFC. Internetwork FC between the DMN (MPFC) and SN (right anterior insula) was also predicted by cTST, with a negative correlation observed between FC and cTST. Conclusions: This study improves understanding of the relationship between intranetwork and internetwork functional connectivity of intrinsically connected networks (ICNs) in relation to habitual sleep quality and duration. The cumulative amount of sleep that participants achieved over a 14-d period was significantly predictive of intranetwork and inter-network functional connectivity of ICNs, an observation that may underlie the link between sleep status and cognitive performance.

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