Physiological correlates of intellectual function in children with sickle cell disease: hypoxaemia, hyperaemia and

Alexandra M Hogan1, Ineke M Pit-ten Cate, Faraneh Vargha-Khadem

  • 1Developmental Cognitive Neuroscience Unit, Institute of Child Health, University College London, UK. a.hogan@soton.ac.uk

Developmental Science
|June 13, 2006
PubMed

Insights

Children with sickle cell disease (SCD) show lowered intelligence. Reduced oxygen saturation is linked to increased cerebral blood flow velocity, which is associated with lower IQ scores in adolescents with SCD.

Area of Science:

  • Neurology
  • Hematology
  • Pediatrics

Background:

  • Sickle cell disease (SCD) is associated with cognitive deficits in children.
  • Brain infarcts are a known cause, but subtle IQ lowering in normal MRI scans suggests other factors.
  • Chronic hypoxia from systemic complications may impair brain oxygen delivery.

Purpose of the Study:

  • To investigate the relationship between oxygen saturation (SpO2), cerebral blood flow velocity (CBFV), and intellectual function (IQ) in adolescents with SCD.
  • To explore the mediating role of CBFV in the association between SpO2 and IQ.

Main Methods:

  • Path-analysis was used in 30 adolescents with SCD (mean age 17.4 years).
  • Daytime oxyhaemoglobin saturation (SpO2), cerebral blood flow velocity (CBFV), and intellectual quotient (IQ) were measured.

Main Results:

  • A significant negative correlation was found between SpO2 and CBFV.
  • Increased CBFV was negatively correlated with Full Scale IQ (FSIQ).
  • The association between SpO2 and FSIQ was fully mediated by CBFV.
  • CBFV significantly impacted verbal IQ but not performance IQ.

Conclusions:

  • Lowered intellectual function in SCD may be partly explained by chronic hypoxia and abnormal oxygen delivery to the brain, even without infarcts.
  • Increased cerebral blood flow velocity is a potential mechanism linking reduced oxygen saturation to cognitive deficits in SCD.
  • Findings have implications for understanding SCD pathophysiology and its impact on brain function.

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