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Published on: December 6, 2016
Pharyngeal critical pressure in children with mild sleep-disordered breathing
R F Fregosi1, S F Quan, W L Morgan
1Dept. of Physiology, The University of Arizona, Tucson, AZ 85721, USA. Fregosi@u.arizona.edu
Insights
Children with mild sleep-disordered breathing (SDB) have more collapsible airways. This suggests that airway collapsibility contributes to mild SDB in pediatric populations.
Area of Science:
- Pediatric Pulmonology
- Sleep Medicine
- Respiratory Physiology
Background:
- Obstructive sleep-disordered breathing (SDB) is linked to pharyngeal narrowing.
- Previous studies focused on severe pediatric SDB, leaving mild cases understudied.
- The role of airway collapsibility in mild pediatric SDB remains unclear.
Purpose of the Study:
- To investigate pharyngeal airway collapsibility in children with mild sleep-disordered breathing.
- To compare airway collapsibility between children with mild SDB and healthy controls.
- To determine if intrinsic pharyngeal collapsibility is a factor in mild pediatric SDB.
Main Methods:
- Measured airway collapsibility using negative pressure applied to the pharynx during sleep.
- Assessed 10 control children and 7 children with mild SDB (hypopneas/h).
- Calculated the critical pressure of the upper airway (Pcrit) from flow-pressure curves.
Main Results:
- Children with mild SDB had a significantly higher Pcrit than controls (-10.8 vs. -15.7 cmH2O).
- No significant differences were found in airflow resistance or pressure-flow curve slopes.
- These findings indicate increased pharyngeal collapsibility in children with mild SDB.
Conclusions:
- Intrinsic pharyngeal collapsibility contributes to mild sleep-disordered breathing in children.
- This study highlights the importance of airway collapsibility even in milder forms of pediatric SDB.
- Further research can explore interventions targeting pharyngeal collapsibility in this population.
Abstract:
There is evidence that narrowing or collapse of the pharynx can contribute to obstructive sleep-disordered breathing (SDB) in adults and children. However, studies in children have focused on those with relatively severe SDB who generally were recruited from sleep clinics. It is unclear whether children with mild SDB who primarily have hypopneas, and not frank apnea, also have more collapsible airways. We estimated airway collapsibility in 10 control subjects (9.4 +/- 0.5 yr old; 1.9 +/- 0.2 hypopneas/h) and 7 children with mild SDB (10.6 +/- 0.5 yr old; 11.5 +/- 0.1 hypopneas/h) during stable, non-rapid eye movement sleep. None of the subjects had clinically significant enlargement of the tonsils or adenoids, nor had any undergone previous tonsillectomy or adenoidectomy. Airway collapsibility was measured by brief (2-breath duration) and sudden reductions in pharyngeal pressure by connecting the breathing mask to a negative pressure source. Negative pressure applications ranging from -1 to -20 cmH(2)O were randomly applied in each subject while respiratory airflow and mask pressure were measured. Flow-pressure curves were constructed for each subject, and the x-intercept gave the pressure at zero flow, the so-called critical pressure of the upper airway (Pcrit). Pcrit was significantly higher in children with SDB than in controls (-10.8 +/- 2.8 vs. -15.7 +/- 1.2 cmH(2)O; P < 0.05). There were no significant differences in the slopes of the pressure-flow relations or in baseline airflow resistance. These data support the concept that intrinsic pharyngeal collapsibility contributes to mild SDB in children.
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