4.4 Article

Comparison of Apnea Detection Using Oronasal Thermal Airflow Sensor, Nasal Pressure Transducer, Respiratory Inductance Plethysmography and Tracheal Sound Sensor

期刊

JOURNAL OF CLINICAL SLEEP MEDICINE
卷 15, 期 2, 页码 285-292

出版社

AMER ACAD SLEEP MEDICINE
DOI: 10.5664/jcsm.7634

关键词

flow measurement; home sleep apnea test; obstructive sleep apnea; polysomnography; sleep-disordered breathing; tracheal sound

资金

  1. CIDELEC, France
  2. National Program of Sustainability II (MEYS CR) [LQ1605]
  3. project FNUSA-ICRC [CZ. 1.05/1.1.00/02.0123]

向作者/读者索取更多资源

Study Objectives: Evaluation of apnea detection using a tracheal sound (TS) sensor during sleep in patients with obstructive sleep apnea. Methods: Polysomnographic recordings of 32 patients (25 male, mean age 66.7 +/- 15.3 years, and mean body mass index 30.1 +/- 4.5 kg/m(2)) were analyzed to compare the detection of apneas by four different methods of airflow signals: oronasal thermal airflow sensor (thermistor), nasal pressure transducer (NP), respiratory inductance plethysmography (RIPsum) and TS. The four used signals were scored randomly and independently from each other according to American Academy of Sleep Medicine rules. Results of apnea detection using NP, RIPsum and TS signals were compared to those obtained by thermistor as a reference signal. Results: The number of apneas detected by the thermistor was 4,167. The number of apneas detected using the NP was 5,416 (+29.97%), using the RIPsum was 2,959 (-29.71%) and using the TS was 5,019 (+ 20.45%). The kappa statistics (95% confidence interval) were 0.72 (0.71 to 0.74) for TS, 0.69 (0.67 to 0.70) for NP, and 0.57 (0.55 to 0.59) for RIPsum. The sensitivity/specificity (%) with respect to the thermistor were 99.23/69.27, 64.07/93.06 and 96.06/76.07 for the NP, RIPsum and TS respectively. Conclusions: With the sensor placed properly on the suprasternal notch, tracheal sounds could help detecting apneas that are underscored by the RIPsum and identify apneas that may be overscored by the NP sensor due to mouth breathing. In the absence of thermistor, TS sensors can be used for apnea detection.

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