Personalized sleep-wake patterns aligned with circadian rhythm relieve daytime sleepiness

Jaehyoung Hong, Su Jung Choi, Se Ho Park, Hyukpyo Hong, Victoria Booth, Eun Yeon Joo, Jae Kyoung Kim

Research output: Contribution to journalArticlepeer-review

19 Scopus citations

Abstract

Shift workers and many other groups experience irregular sleep-wake patterns. This can induce excessive daytime sleepiness that decreases productivity and elevates the risk of accidents. However, the degree of daytime sleepiness is not correlated with standard sleep parameters like total sleep time, suggesting other factors are involved. Here, we analyze real-world sleep-wake patterns of shift workers measured with wearables by developing a computational package that simulates homeostatic sleep pressure – physiological need for sleep – and the circadian rhythm. This reveals that shift workers who align sleep-wake patterns with their circadian rhythm have lower daytime sleepiness, even if they sleep less. The alignment, quantified by the sleep parameter, circadian sleep sufficiency, can be increased by dynamically adjusting daily sleep durations according to varying bedtimes. Our computational package provides flexible and personalized real-time sleep-wake patterns for individuals to reduce their daytime sleepiness and could be used with wearables to develop smart alarms.

Original languageEnglish
Article number103129
JournaliScience
Volume24
Issue number10
DOIs
StatePublished - 22 Oct 2021

Keywords

  • Behavioral neuroscience
  • Biological sciences
  • Mathematical biosciences
  • Neuroscience
  • Systems biology

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