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Article

The Sleep of the Ring: Comparison of the ŌURA Sleep Tracker Against Polysomnography

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REFERENCES

  • American Medical Association & American Academy of Sleep Medicine. (2010). Resolution 503: Insufficient sleep in adolescents. Retrieved from https://www.avma.org/Advocacy/National/Other/Documents/resolution_519.pdf
  • American Psychiatric Association. (2000). Diagnostic and statistical manual of mental disorders (4th ed., text rev.). Washington, DC: Author.
  • Ancoli-Israel, S., Cole, R., Alessi, C., Chambers, M., Moorcroft, W., & Pollak, C. (2003). The role of actigraphy in the study of sleep and circadian rhythms. Sleep, 26(3), 342–392.
  • Baker, F., Willoughby, A., de Zambotti, M., Franzen, P., Prouty, D., Javitz, H.,… Colrain, I. (2016). Age-related differences in sleep architecture and electroencephalogram in adolescents in the National Consortium on Alcohol and NeuroDevelopment in Adolescence Sample. Sleep, 39(7), 1429–1439.
  • Baroni, A., Bruzzese, J., Di Bartolo, C., & Shatkin, J. (2016). Fitbit Flex: An unreliable device for longitudinal sleep measures in a non-clinical population. Sleep and Breathing, 20(2), 853–854.
  • Basaranoglu, G., Bakan, M., Umutoglu, T., Zengin, S. U., Idin, K., & Salihoglu, Z. (2015). Comparison of SpO2 values from different fingers of the hands. SpringerPlus, 4, 561.
  • Bland, J., & Altman, D. (1986). Statistical methods for assessing agreement between two methods of clinical measurement. Lancet, 1(8476), 307–310.
  • Brandenberger, G., Ehrhart, J., & Buchheit, M. (2005). Sleep stage 2: An electroencephalographic, autonomic, and hormonal duality. Sleep, 28(12), 1535–1540.
  • Brandenberger, G., Ehrhart, J., Piquard, F., & Simon, C. (2001). Inverse coupling between ultradian oscillations in delta wave activity and heart rate variability during sleep. Clinical Neurophysiology, 112(6), 992–996.
  • Brown, S. A., Brumback, T., Tomlinson, K., Cummins, K., Thompson, W. K., Nagel, B. J.,… Chung, T. (2015). The National Consortium on Alcohol and NeuroDevelopment in Adolescence (NCANDA): A multisite study of adolescent development and substance use. Journal of Studies on Alcohol and Drugs, 76(6), 895–908.
  • Colrain, I., & Baker, F. (2011). Changes in sleep as a function of adolescent development. Neuropsychology Review, 21(1), 5–21.
  • de Zambotti, M., Baker, F., & Colrain, I. (2015). Validation of sleep-tracking technology compared with polysomnography in adolescents. Sleep, 38(9), 1461–1468.
  • de Zambotti, M., Baker, F., Willoughby, A., Godino, J., Wing, D., Patrick, K., & Colrain, I. (2016). Measures of sleep and cardiac functioning during sleep using a multi-sensory commercially-available wristband in adolescents. Physiology & Behavior, 158, 143–149.
  • de Zambotti, M., Claudatos, S., Inkelis, S., Colrain, I., & Baker, F. (2015). Evaluation of a consumer fitness-tracking device to assess sleep in adults. Chronobiology International, 37(2), 1024–1028.
  • de Zambotti, M., Godino, J., Baker, F., Cheung, J., Patrick, K., & Colrain, I. (2016). The boom in wearable technology: Cause for alarm or just what is needed to better understand sleep? Sleep, 39(9), 1761–1762.
  • Feinberg, I., & Campbell, I. (2010). Sleep EEG changes during adolescence: An index of a fundamental brain reorganization. Brain and Cognition, 72(1), 56–65.
  • Gradisar, M., Gardner, G., & Dohnt, H. (2011). Recent worldwide sleep patterns and problems during adolescence: A review and meta-analysis of age, region, and sleep. Sleep Medicine, 12(2), 110–118.
  • Hagenauer, M., Perryman, J., Lee, T., & Carskadon, M. (2009). Adolescent changes in the homeostatic and circadian regulation of sleep. Developmental Neuroscience, 31(4), 276–284.
  • Iber, C. (2007). The AASM manual for the scoring of sleep and associated events: Rules, terminology and technical specifications. Darien, IL: American Academy of Sleep Medicine.
  • Kinnunen, H. (2016). Validity of the ŌURA ring in determining sleep quantity and quality. Sleep lab validation of a wellness ring in detecting sleep patterns based on photoplethysmogram, actigraphy and body temperature. Retrieved from https://support.ouraring.com/support/solutions/6000114605
  • Kolla, B. P., Mansukhani, S., & Mansukhani, M. P. (2016). Consumer sleep tracking devices: A review of mechanisms, validity and utility. Expert Review of Medical Devices, 13(5), 497–506.
  • Mantua, J., Gravel, N., & Spencer, R. M. (2016). Reliability of sleep measures from four personal health monitoring devices compared to research-based actigraphy and polysomnography. Sensors, 16(5), 646.
  • Marino, M., Li, Y., Rueschman, M. N., Winkelman, J., Ellenbogen, J., Solet, J.,… Buxton, O. M. (2013). Measuring sleep: Accuracy, sensitivity, and specificity of wrist actigraphy compared to polysomnography. Sleep, 36(11), 1747–1755.
  • Meltzer, L., Hiruma, L., Avis, K., Montgomery-Downs, H., & Valentin, J. (2015). Comparison of a commercial accelerometer with polysomnography and actigraphy in children and adolescents. Sleep, 38(8), 1323–1330.
  • Meltzer, L., Walsh, C., Traylor, J., & Westin, A. (2012). Direct comparison of two new actigraphs and polysomnography in children and adolescents. Sleep, 35(1), 159–166.
  • Montgomery-Downs, H., Insana, S., & Bond, J. (2012). Movement toward a novel activity monitoring device. Sleep and Breathing, 16(3), 913–917.
  • Otzenberger, H., Simon, C., Gronfier, C., & Brandenberger, G. (1997). Temporal relationship between dynamic heart rate variability and electroencephalographic activity during sleep in man. Neuroscience Letters, 229(3), 173–176.
  • Paquet, J., Kawinska, A., & Carrier, J. (2007). Wake detection capacity of actigraphy during sleep. Sleep, 30(10), 1362–1369.
  • Roane, B., Van Reen, E., Hart, C., Wing, R., & Carskadon, M. (2015). Estimating sleep from multisensory armband measurements: Validity and reliability in teens. Journal of Sleep Research, 24(6), 714–721.
  • Sadeh, A. (2011). The role and validity of actigraphy in sleep medicine: An update. Sleep Medicine Reviews, 15(4), 259–267.
  • Soric, M., Turkalj, M., Kucic, D., Marusic, I., Plavec, D., & Misigoj-Durakovic, M. (2013). Validation of a multi-sensor activity monitor for assessing sleep in children and adolescents. Sleep Medicine Reviews, 14(2), 201–205.
  • Thomas, R. J., Mietus, J. E., Peng, C.-K., Guo, D., Gozal, D., Montgomery-Downs, H.,… Goldberger, A. L. (2014). Relationship between delta power and the electrocardiogram-derived cardiopulmonary spectrogram: Possible implications for assessing the effectiveness of sleep. Sleep Medicine, 15(1), 125–131.
  • Toon, E., Davey, M., Hollis, S., Nixon, G., Horne, R., & Biggs, S. (2015). Comparison of commercial wrist-based and smartphone accelerometers, actigraphy, and PSG in a clinical cohort of children and adolescents. Journal of Clinical Sleep Medicine, 12(3), 343–350.
  • Trinder, J. (2007). Cardiac activity and sympathovagal balance during sleep. Sleep Medicine Clinics, 2(2), 199–208.
  • Van de Water, A., Holmes, A., & Hurley, D. (2011). Objective measurements of sleep for non-laboratory settings as alternatives to polysomnography: A systematic review. Journal of Sleep Research, 20(1 Pt 2), 183–200.
  • Werner, H., Molinari, L., Guyer, C., & Jenni, O. (2008). Agreement rates between actigraphy, diary, and questionnaire for children’s sleep patterns. JAMA Pediatrics, 162(4), 350–358.

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