Hot executive function following moderate-to-late preterm birth: altered delay discounting at 4 years of age

Amanda S Hodel1, Jane E Brumbaugh2, Alyssa R Morris1

  • 1Institute of Child Development, University of Minnesota, USA.

Developmental Science
|April 16, 2015
PubMed

Insights

Children born moderate-to-late preterm (32-36 weeks gestation) show deficits in "hot" executive functions, impacting reward processing. These neurodevelopmental effects persist across a wide gestational age range, highlighting ongoing risks.

Area of Science:

  • Neuroscience
  • Developmental Psychology
  • Pediatrics

Background:

  • Moderate-to-late preterm birth (32-36 weeks gestation) is linked to academic deficits.
  • Previous research on executive function (EF) in preterm infants focused on high-risk (<32 weeks) and neutral contexts.
  • The impact of preterm birth on
  • hot
  • EF (emotionally charged contexts) is largely unstudied.

Purpose of the Study:

  • To investigate
  • hot
  • EF impairments in low-risk, moderate-to-late preterm children.
  • To examine reward processing differences in relation to gestational age.

Main Methods:

  • Assessed
  • hot
  • EF using delay discounting (tangible rewards) and delay aversion (abstract rewards) tasks.
  • Evaluated
  • cool
  • EF and controlled for intelligence and processing speed.
  • Included healthy children born moderate-to-late preterm and full-term peers at 4.5 years.

Main Results:

  • Preterm children were less likely to choose larger, delayed rewards.
  • Performance on delay aversion and
  • cool
  • EF tasks was similar to full-term peers.
  • A continuous relationship was found between gestational age and delayed reward selection, significant even after controlling for covariates.

Conclusions:

  • Low-risk moderate-to-late preterm birth is associated with deficits in
  • hot
  • EF, specifically in reward processing.
  • Neurodevelopmental effects of preterm birth are not limited to a specific gestational age cut-off.
  • Further research on reward processing and
  • hot
  • EF in preterm populations is crucial due to prefrontal cortex vulnerability.

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