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Published on: December 6, 2016
Sleep and breathing on the first night after adenotonsillectomy for obstructive sleep apnea
G M Nixon1, A S Kermack, C D McGregor
1Department of Pediatrics, McGill University, Montreal, Quebec, Canada. gilliann@adhb.govt.nz
Insights
Post-adenotonsillectomy (T&A), children with obstructive sleep apnea (OSA) experience upper airway obstruction. Severe OSA patients had more frequent obstructive events and disrupted sleep quality after T&A.
Area of Science:
- Pediatric Sleep Medicine
- Otolaryngology
- Respiratory Medicine
Background:
- Adenotonsillectomy (T&A) effectively treats obstructive sleep apnea (OSA) in children.
- Over 20% of children with OSA experience postoperative respiratory compromise after T&A.
- The underlying mechanisms of this complication remain unclear.
Purpose of the Study:
- To compare the nature and severity of sleep-disordered breathing post-T&A in children with mild versus severe OSA.
- To elucidate the mechanisms of respiratory compromise following T&A.
Main Methods:
- Polysomnography was performed on the first postoperative night in 10 children with mild or severe OSA.
- Sleep-disordered breathing was assessed using the apnea-hypopnea index and desaturation index (DI(90)).
- Sleep quality was evaluated by sleep efficiency, sleep stage duration, and respiratory arousal index.
Main Results:
- All children exhibited obstructive events post-T&A, with significantly higher frequency in the severe OSA group (21.5 events/hr vs. 6.9 events/hr).
- Obstructive events were the primary cause of postoperative oxygen desaturation.
- Both mild and severe OSA groups showed severely disrupted sleep quality, including reduced slow-wave and REM sleep.
Conclusions:
- Upper airway obstruction persists on the first postoperative night after T&A in children with OSA, even after lymphoid tissue removal.
- This study identifies the mechanism of respiratory compromise post-T&A, particularly in children with severe OSA.
Abstract:
Adenotonsillectomy (T&A) has established effectiveness for the treatment of obstructive sleep apnea (OSA). However, more than 20% of children with OSA have respiratory compromise requiring medical intervention in the postoperative period. The reasons for this complication are not well-defined. We aimed to compare the nature and severity of sleep-disordered breathing in children with mild and severe OSA on the first night following adenotonsillectomy. Ten children were classified into groups of mild and severe OSA, based on preoperative testing. On the first night after T&A, they underwent polysomnography, including electroencephalograph, submental electromyography, bilateral electro-oculograms, monitoring of respiratory movements, heart rate, ECG, and oxygen saturation. Sleep-disordered breathing was assessed by the apnea-hypopnea index, the SaO(2) nadir, and the desaturation index, including dips in saturation below 90% (DI(90)). Sleep quality was assessed by sleep efficiency, time spent in each sleep state, and respiratory arousal index. Obstructive events occurred postoperatively in all children, but were more frequent in those with severe OSA preoperatively: the median (interquartile range) mixed/obstructive apnea/hypopnea indicies were 6.9 (2.2-9.8) events/hr and 21.5 (15.1-112.1) events/hr for the mild OSA group and the severe OSA group, respectively (P = 0.009). Obstructive events were the major cause of desaturation during sleep postoperatively. Sleep quality was severely disrupted in both groups, with reductions in both slow-wave sleep and rapid eye movement sleep. In conclusion, despite removal of obstructing lymphoid tissue, upper airway obstruction occurred on the first postoperative night in children with OSA. This study is the first to demonstrate the mechanism of respiratory compromise after adenotonsillectomy, a common postoperative complication in children with severe OSA.
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