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Published on: November 6, 2019
Continuous oximetry recordings on the first post-operative night after pediatric adenotonsillectomy-a case-control
Katharine Jamieson1, Han Jie Soh2, Margot J Davey3
1Melbourne Children's Sleep Centre, Monash Children's Hospital, Melbourne, Australia.
Insights
Children with pre-operative obstructive sleep apnea (OSA) and recurrent oxygen desaturations often have abnormal oximetry post-adenotonsillectomy (AT). Close clinical observation is recommended, especially for high-risk children, rather than solely relying on post-operative oximetry data.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Anesthesiology
Background:
- Children with obstructive sleep apnea (OSA) and recurrent oxygen desaturations face increased risks of post-operative airway compromise after adenotonsillectomy (AT).
- Pre-operative oximetry is crucial for identifying children at higher risk for post-operative complications.
Purpose of the Study:
- To assess post-operative oxygen saturation (SpO2) levels in children with pre-existing desaturations after AT.
- To compare post-operative desaturation extent between high-risk and low-risk pre-operative groups.
Main Methods:
- Prospective study of 57 children undergoing AT, divided into high-risk (pre-operative McGill Oximetry Score [MOS] 2-4) and low-risk (normal/inconclusive pre-operative MOS) groups.
- Overnight oximetry on the first post-operative night measured SpO2 nadir, mean SpO2, and rates of SpO2 dips.
- Clinical factors and post-operative complications were recorded from medical records.
Main Results:
- 82% of high-risk children maintained abnormal post-operative oximetry, though improved from pre-operative levels.
- Respiratory adverse events were significantly more common in the high-risk group (39% vs. 3%).
- Clinical intervention was more likely with abnormal post-operative oximetry (73% vs. 32%).
Conclusions:
- Abnormal pre-operative oximetry in children with OSA often persists post-AT, necessitating careful monitoring.
- Despite repetitive desaturations, not all high-risk children experience clinical adverse events.
- Clinical observation is paramount for high-risk children post-AT, especially those with abnormal pre-operative oximetry.
Background:
Children with obstructive sleep apnea (OSA) with recurrent dips in oxygen saturation (SpO2) during sleep are known to be at increased risk of post-operative airway compromise after adenotonsillectomy (AT). We aimed to determine the extent of desaturation on the first post-operative night in children known to have recurrent desaturation pre-operatively and to compare the extent of desaturation in that group with results in children known to have normal oximetry recordings pre-operatively.
Methods:
Prospective sequential recruitment of 57 children who had overnight oximetry performed on the first night after adenotonsillectomy was undertaken, including 28 with a McGill Oximetry Score (MOS) of 2-4 pre-operatively (high risk group) and 29 with a normal/inconclusive pre-operative MOS (low risk group). Oximetry parameters (mean SpO2, SpO2 nadir, and rates of SpO2 dips below 90% and dips of ≥4%) were compared to the pre-operative oximetry result. Demographic and clinical factors, and the occurrence of post-operative complications, were derived from the medical record.
Results:
In the high risk group, the MOS improved in 23/28 children, but remained abnormal in 82%. Conversely, in the low risk group 26/29 (90%) had a normal post-operative oximetry. The remaining 3, all of whom had severe OSA on pre-operative polysomnography, had a lowered baseline SpO2 post-operatively. Mean SpO2 was slightly lower post-operatively in both groups. In the high risk group, all other SpO2 measures improved post-operatively. Respiratory adverse events were more common in the high risk group as expected (39% compared to 3% in the low risk group, p = 0.001). An adverse event requiring clinical intervention was significantly more likely if the post-operative oximetry was abnormal (result unknown to the treating team), occurring in 73% of children with an abnormal compared with 32% of children with a normal post-operative oximetry (p = 0.002).
Conclusion:
Most children with an abnormal oximetry pre-operatively continued to have an abnormal oximetry on the first night after AT, albeit somewhat improved. While adverse events were more frequent in children with an abnormal post-operative oximetry, half (54%) did not suffer a clinical respiratory adverse event despite having repetitive desaturations on downloadable oximetry. These findings support close clinical observation of children at high risk of complications post-operatively, especially those with abnormal oximetry pre-operatively, rather than focusing on recurrent dips in SpO2 on post-operative oximetry downloads in the absence of clinically evident complications.
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