Abstract
Study objectives: This is a feasibility study designed to evaluate the accuracy of thermal infrared imaging (TIRI) as a noncontact method to monitor airflow during polysomnography and to ascertain the chance-corrected agreement (κ) between TIRI and conventional airflow channels (nasal pressure [Pn], oronasal thermistor and expired CO2 [PECO2]) in the detection of apnea and hypopnea. design: Subjects were recruited to undergo polysomnography for 1 to 2 hours, during which simultaneous recordings from electroencephalography, electrooculography, electromyography, respiratory impedance plethysmography, conventional airflow channels, and TIRI were obtained. Setting: University-affiliated, American Academy of Sleep Medicine-accredited sleep disorders center. Patients or Participants: Fourteen volunteers without a history of sleep disordered breathing and 13 patients with a history of obstructive sleep apnea were recruited. Measurements And Results: In the detection of apnea and hypopnea, excellent agreement was noted between TIRI and thermistor (κ = 0.92, Bayesian Credible Interval [BCI] 0.86, 0.96; pκ = 0.99). Good agreement was noted between TIRI and Pn (κ = 0.83, BCI 0.70, 0.90; pκ = 0.98) and between TIRI and PECO 2 (κ = 0.80, BCI 0.66, 0.89; pκ = 0.94). Conclusions: TIRI is a feasible noncontact technology to monitor airflow during polysomnography. In its current methodologic incarnation, it demonstrates a high degree of chance-corrected agreement with the oronasal thermistor in the detection of apnea and hypopneas but demonstrates a lesser degree of chance-corrected agreement with Pn. Further overnight validation studies must be performed to evaluate its potential in clinical sleep medicine.
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Murthy, J. N., Van Jaarsveld, J., Fei, J., Pavlidis, I., Harrykissoon, R. I., Lucke, J. F., … Castriotta, R. J. (2009). Thermal infrared imaging: A novel method to monitor airflow during polysomnography. Sleep, 32(11), 1521–1527. https://doi.org/10.1093/sleep/32.11.1521
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