Quantifying Sleep-Wake Rhythms in the Hospital Environment with Digital Technologies
Skarke, C.; El Jamal, N.; Genuardi, M. V.; Brooks, T. G.; Mrcela, A.; Lahens, N. F.; Cordoza, M.; Sarles, S.; Mbadugh, A.; Karunamuni, D. R.; Gupta, S.; Bae, C. J.; Sehgal, A.; Cappola, T. P.; Gutsche, J. T.; Atluri, P.; Desai, N. D.; Acker, M. A.; Grant, G. R.; Schwab, R. J.; Rosen, I. M.; FitzGerald, G. A.
Show abstract
Postoperative clinical care is prone to circadian desynchronization that, in turn, may influence health outcomes. We collected 1.8 million data points using 11 remote sensors during preoperative, in-hospital and post-discharge settings in 13 elective cardiac surgery patients. We found that room traffic continued during nighttime with [≥]1 visit/h. Sound levels exceeded the recommended 45 dBA threshold (51.9{+/-}3.3 versus 48.3{+/-}4.2 dBA during nighttime). Brightness dropped at night (89.9{+/-}87.7 to 3.7{+/-}9.8 lux), but bright light exposures occurred. Ambient room temperature lacked sleep-inducing diurnal variability. Behavioral-physiological rhythms were disrupted (decreased amplitude of heart rate variability; unadjusted-p-value=0.03) and phase-shifted during hospitalization. Time awake during night hours increased from 10.7{+/-}7.9% preoperatively to 34.8{+/-}29.1% in-hospital (unadjusted p-value=0.0098). Cognitive function scores decreased (26.8{+/-}2.8 points preoperatively to 24.7{+/-}3.9 points in-hospital) with 31% of patients developing transient mild impairment. These data will inform the design of a controlled trial seeking to modify circadian/diurnal disruptors to enhance patient outcomes.
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