Increased cerebral blood flow velocity in children with mild sleep-disordered breathing: a possible association with

Catherine M Hill1, Alexandra M Hogan, Nwanneka Onugha

  • 1Division of Clinical Neurosciences, University of Southampton, United Kingdom. cmh2@soton.ac.uk

Pediatrics
|October 4, 2006
PubMed

Insights

Children with mild sleep-disordered breathing show increased cerebral blood flow velocities, potentially contributing to cognitive and behavioral deficits. Further research is needed to explore these links and underlying mechanisms.

Area of Science:

  • Pediatric Neurology
  • Sleep Medicine
  • Cerebrovascular Physiology

Background:

  • Sleep-disordered breathing (SDB) in children, ranging from primary snoring to obstructive sleep apnea, is increasingly recognized as potentially harmful.
  • Emerging evidence links SDB to neuropsychological deficits, but the underlying cerebrovascular mechanisms in children are poorly understood.
  • Adults with SDB have increased cerebrovascular disease risk; similar investigations in children are warranted.

Purpose of the Study:

  • To investigate cerebral blood flow velocity differences in children with SDB without sickle cell disease.
  • To explore the potential contribution of altered cerebral hemodynamics to associated neuropsychological deficits.

Main Methods:

  • Thirty-one children (3-7 years) with SDB (apnea/hypopnea index <5) and 17 controls underwent polysomnography.
  • Cerebral blood flow velocities were measured using transcranial Doppler in the middle cerebral arteries.
  • Neuropsychological assessments included executive function (BRIEF), visual attention (NEPSY), and IQ (WPPSI-III).

Main Results:

  • Children with mild SDB exhibited significantly higher middle cerebral artery blood flow velocities compared to controls.
  • SDB children showed lower scores in processing speed and visual attention, and parental-reported executive function deficits.
  • Adjusting for cerebral blood flow velocities reduced or eliminated group differences in neuropsychological outcomes, suggesting a hemodynamic link.

Conclusions:

  • Childhood SDB is associated with increased cerebral blood flow velocities, indicating altered cerebral hemodynamics.
  • These hemodynamic changes may contribute to observed deficits in cognitive processing speed, visual attention, and executive function.
  • Further prospective studies are needed to confirm causality and elucidate the precise physiological mechanisms.
Abstract

Related Concept Videos

Increased Intracranial Pressure ll: Pathophysiology01:29

Increased Intracranial Pressure ll: Pathophysiology

Increased intracranial pressure (ICP) refers to a potentially life-threatening rise in pressure inside the skull. This usually happens when there is a major change in the volume of brain tissue, blood, or cerebrospinal fluid (CSF) — the three components inside the skull. According to the Monro-Kellie doctrine, if the volume of one component increases, the volumes of the other components must decrease to maintain normal pressure. If this does not happen, ICP rises.The process often begins with...
Attention-Deficit/Hyperactivity Disorder01:30

Attention-Deficit/Hyperactivity Disorder

Attention-deficit/hyperactivity disorder (ADHD) is a neurodevelopmental disorder characterized by persistent inattention, hyperactivity, and impulsivity. It affects approximately 5-8% of children globally, with around 60-70% of cases persisting into adulthood. ADHD has significant implications for educational attainment, social interactions, and occupational success.
Diagnostic Criteria and Symptoms
To diagnose ADHD, symptoms must manifest before age 12 and be evident across multiple settings.
Sleep Apnea01:21

Sleep Apnea

Sleep apnea is a condition where breathing stops intermittently during sleep, often leading to significant health issues. Each episode can last from 10 to 20 seconds or more and is frequently accompanied by a brief arousal from sleep. This disturbance, largely unnoticed by the individual, can lead to severe daytime fatigue. Commonly, individuals seek help after being informed by their partners about loud snoring and noticeable breathing pauses during sleep.
The condition is more prevalent among...
Increased Intracranial Pressure l: Introduction01:14

Increased Intracranial Pressure l: Introduction

Intracranial hypertension is a sustained elevation of intracranial pressure (ICP) above 22 mm Hg. In supine adults, normal ICP is ~7–15 mm Hg.The rigid, nonexpandable cranium contains three components—brain tissue, blood, and cerebrospinal fluid (CSF)—that total ~1,700 mL in a typical adult: 1,400 mL brain (~80%), 150 mL blood (~10%), and 150 mL CSF (~10%). According to the Monro–Kellie doctrine, total intracranial volume is effectively fixed. When one component expands, CSF and venous blood...
Respiratory Volumes and Capacities I01:26

Respiratory Volumes and Capacities I

Assessing the respiratory rate and rhythm for a complete minute is crucial for evaluating the breathing pattern. Even a minor increase in the patient's average respiratory rate, by as little as three to five breaths per minute, is an early and vital indicator of respiratory distress. Patients with a respiratory rate exceeding twenty-four breaths per minute require close monitoring to determine the physiological alterations. This careful observation is essential for prompt recognition and...
Alterations in Respiration II01:30

Alterations in Respiration II

There are numerous types of normal and abnormal respiration. Based on ventilatory movements, breathing patterns are classified as regular, deep, or shallow. Examples include Biot's breathing, Cheyne-Stokes respiration, Kussmaul's breathing, hyperventilation, and hypoventilation. Each pattern is clinically significant and aids in evaluating patients.
In Biot's breathing, the respiratory rate and depth are irregular, alternating between periods of deep gasping and apnea. Common causes include...