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Published on: December 6, 2016
Overnight polysomnography versus respiratory polygraphy in the diagnosis of pediatric obstructive sleep apnea
Hui-Leng Tan1, David Gozal2, Helena Molero Ramirez2
1Section of Pediatric Sleep Medicine, Department of Pediatrics, Pritzker School of Medicine, Biological Sciences Division, The University of Chicago, Chicago, IL ; Department of Paediatric Respiratory Medicine, Royal Brompton Hospital, London, UK.
Insights
Respiratory polygraphy (RP) underestimates the apnea-hypopnea index (AHI) in children with obstructive sleep apnea (OSA). This impacts clinical decisions, especially for mild to moderate OSA cases.
Area of Science:
- Pediatric Sleep Medicine
- Respiratory Physiology
- Diagnostic Accuracy
Background:
- Discrepancies in diagnostic methods for pediatric obstructive sleep apnea (OSA) exist globally.
- Polysomnography (PSG) is standard in the US/Australia, while respiratory polygraphy (RP) is common in Europe.
- Home RP may underestimate the apnea-hypopnea index (AHI) due to calculation methods.
Purpose of the Study:
- To compare AHI measurements between in-lab RP and PSG in children.
- To evaluate the impact of RP-based AHI on clinical decision-making for pediatric OSA.
- To identify patient subgroups where RP may lead to misdiagnosis or altered treatment plans.
Main Methods:
- 100 children diagnosed with OSA via PSG were analyzed.
- PSG recordings were converted to RP by removing specific channels.
- AHI was recalculated from RP (AHI-RP) and compared to original PSG (AHI-PSG).
- Clinical decisions based on both AHI-RP and AHI-PSG were compared.
Main Results:
- In-lab RP underestimated AHI compared to PSG, even with accurate total sleep time (TST) estimation.
- Missed hypopneas causing arousals without desaturation contributed to underestimation.
- Clinical management decisions changed for 23% of patients based on RP vs. PSG results.
- Significant discrepancies in management were noted for patients with mild (1 ≤ AHI < 5) and moderate (5 ≤ AHI < 10) OSA.
Conclusions:
- AHI is underestimated by RP, impacting clinical decisions in pediatric OSA.
- The disparity between AHI-RP and AHI-PSG significantly affects management, particularly in mild to moderate cases.
- RP may lead to delayed or inappropriate treatment for pediatric OSA patients.
Background:
Substantial discrepancies exist in the type of sleep studies performed to diagnose pediatric obstructive sleep apnea (OSA) in different countries. Respiratory polygraphic (RP) recordings are primarily performed in sleep laboratories in Europe, whereas polysomnography (PSG) constitutes the majority in the US and Australia. Home RP show consistent apnea-hypopnea index (AHI) underscoring, primarily because the total recording time is used as the denominator when calculating the AHI compared to total sleep time (TST). However, laboratory-based RP are less likely affected, since the presence of sleep technicians and video monitoring may enable more accurate TST estimates. We therefore examined differences in AHI in PSG and in-lab RP, and whether RP-based AHI may impact clinical decision making.
Methods:
Of all the children assessed for possible OSA who underwent PSG evaluation, 100 were identified and divided into 4 groups: (A) those with AHI < 1/h TST (n = 20), (B) 1 ≤ AHI < 5/h TST (n = 40), (C) 5 ≤ AHI < 10/h TST (n = 20), and (D) AHI ≥ 10/h TST (n = 20). Electroencephalography, electrooculography, and electromyography channels were deleted from the original unscored recordings to transform them into RP, and then rescored in random sequence. AHI-RP were compared to AHI-PSG, and therapeutic decisions based on AHI-RP and AHI-PSG were formulated and analyzed using clinical details derived from the patient's clinic letter.
Results:
Bland Altman analysis showed that in lab RP underestimated the AHI despite more accurate estimates of TST. This underestimation was due to missed hypopneas causing arousals without desaturation. Basing the therapeutic management decision on RP instead of PSG results changed the clinical management in 23% of all patients. The clinical management for patients in groups A and D was unaffected. However, 27.5% of patients in group B would have been given no treatment, as they would be diagnosed as having no OSA (AHI < 1/h TST) when they should have received a trial of anti-inflammatory therapy or been referred for ear, nose, and throat (ENT) review. Sixty percent of patients in group C would have received either a trial of medical treatment to treat mild OSA or no treatment, instead of referral to ENT services or commencement of continuous positive airway pressure.
Conclusion:
Apnea-hypopnea index (AHI) is underestimated in respiratory polygraphy (RP), and the disparity in AHI-RP and AHI-polysomnography can significantly affect clinical management decisions, particularly in children with mild and moderate obstructive sleep apnea (1 < AHI < 10/h total sleep time).
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