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A Methodological Approach to Non-invasive Assessments of Vascular Function and Morphology
Published on: February 7, 2015
Delayed brachial artery dilation response and increased resting blood flow velocity in young children with mild
Anna Kontos1, Cameron van den Heuvel2, Yvonne Pamula3
1Robinson's Institute, School of Paediatrics and Reproductive Health, University of Adelaide, Australia.
Insights
Children with mild sleep-disordered breathing (SDB) exhibit altered vascular function, including increased blood flow velocity and delayed vessel dilation. These findings suggest potential long-term cardiovascular risks in young children with snoring, warranting further research.
Area of Science:
- Pediatric Cardiology
- Sleep Medicine
- Vascular Physiology
Background:
- Sleep-disordered breathing (SDB) is associated with vascular dysfunction in adults.
- It remains unclear if similar vascular changes are present in children with SDB.
Purpose of the Study:
- To evaluate vascular function in children with snoring, a potential indicator of SDB.
- To compare flow-mediated dilation (FMD) and brachial artery blood flow between snoring children and healthy controls.
Main Methods:
- Overnight polysomnography (PSG) was performed on children with suspected obstructive sleep apnea (OSA) and healthy controls.
- Non-invasive ultrasound imaging measured FMD and brachial arterial blood flow velocity at rest and during hyperaemia.
Main Results:
- Children who snored demonstrated higher resting and hyperaemic velocity time integrals compared to controls.
- A negative association was found between lower oxygen saturation during sleep and velocity time integrals.
- While maximal FMD was similar, the time to reach maximal dilation was significantly delayed in snoring children.
Conclusions:
- Mild SDB in children is linked to altered cardiovascular and haemodynamic function, evidenced by increased blood flow velocity.
- Delayed maximal vessel dilation suggests reduced vascular compliance in children who snore.
- These findings indicate that mild SDB can impact peripheral vascular responses in young children, with unknown long-term implications.
Aim:
This study aimed to evaluate whether the vascular dysfunction perceived in adults with sleep-disordered breathing (SDB) was also evident in children with snoring referred for evaluation of clinically suspected SDB.
Objectives:
This study compared flow-mediated dilatation (FMD), measured at the brachial artery, at rest and during hyperaemic stress between children who snore [n = 23; mean standard deviation (SD) age = 7.51 (1.3) years] and healthy, non-snoring children [n = 11; age = 8.0 (1.3) years].
Methods:
Children with suspected obstructive sleep apnoea (OSA) and healthy non-snoring controls underwent overnight polysomnography (PSG). Using standard techniques, non-invasive FMD and brachial arterial blood flow velocity during rest and hyperaemia were subsequently measured by ultrasound imaging
Measurements:
Resting and hyperaemic velocity time integral (area under the curve of mean systolic velocity × ejection time), maximal dilation response (highest percentage difference from baseline diameter) and the time taken to reach maximal dilation were calculated.
Results:
Children awaiting adenotonsillectomy compared to healthy non-snoring control children had higher velocity time integrals at rest (14 ± 3 m vs. 20 ± 8 m, p < 0.01) and during hyperaemic stress (56 ± 6m vs. 63 ± 13m, p < 0.01) despite having only mild SDB on polysomnographic assessment. Lower nadir oxygen saturation values during non-rapid eye movement sleep were negatively associated with higher resting (r = -0.58, p <0.001) and hyperaemic (r = -0.36, p < 0.05) velocity time integrals. Maximal FMD dilatation response was not significantly different between snoring and non-snoring groups, but the estimated time to reach maximal dilation was significantly delayed in children who snored (60.7 ± 28.4 vs. 39.2 ± 13.2 s, p < 0.05).
Conclusions:
Children with mild SDB showed increased blood flow velocity at rest and during hyperaemic stress suggesting altered cardiovascular and haemodynamic function. The delay in time to maximal vessel dilatation in children who snored also suggests possible reduced vascular compliance in response to hyperaemic sheer stress. Mild SDB appears to alter the peripheral vascular response in young children. The long-term vascular implications of these changes in the growing child are unknown and warrant further investigation.
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