Ambulatory estimation of human circadian phase using models of varying complexity based on non-invasive signal modalities

Enrique A Gil, Xavier L Aubert*, Domien G M Beersma

*Bijbehorende auteur voor dit werk

    OnderzoeksoutputAcademicpeer review

    6 Citaten (Scopus)

    Samenvatting

    In this work, we introduce a number of models for human circadian phase estimation in ambulatory conditions using various sensor modalities. Machine learning techniques have been applied to ambulatory recordings of wrist actigraphy, light exposure, electrocardiograms (ECG), and distal and proximal skin temperature to develop ARMAX models capturing the main signal dependencies on circadian phase and evaluating them versus melatonin onset times. The most accurate models extracted heart rate variability features from an ECG coupled with wrist activity information to produce phase estimations with prediction errors of ~30 minutes. Replacing the ECG features with skin temperature from the upper leg led to a slight degradation, while less accurate results, in the order of 1 hour, were obtained from wrist activity and light measurements. The trade-off between highest precision and least obtrusive configuration is discussed for applications to sleep and mood disorders caused by a misalignment of the internal phase with the external solar and social times.

    Originele taal-2English
    Titel Engineering in Medicine and Biology Society (EMBC)
    Subtitel36th Annual International Conference of the IEEE
    UitgeverijIEEE
    Pagina's2278-2281
    Aantal pagina's4
    Volume2014
    Uitgave36
    ISBN van elektronische versie978-1-4244-7929-0
    ISBN van geprinte versie1557-170X
    DOI's
    StatusPublished - aug.-2014
    Evenement36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society EMBC 2014 - Chicago, IL, United States
    Duur: 26-aug.-201430-aug.-2014

    Conference

    Conference36th Annual International Conference of the IEEE Engineering in Medicine and Biology Society EMBC 2014
    Land/RegioUnited States
    StadChicago, IL
    Periode26/08/201430/08/2014

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