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Updated: Apr 14, 2026

Measuring Delay Discounting in Humans Using an Adjusting Amount Task
Published on: January 9, 2016
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.
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.
Abstract:
Interest in monitoring long-term neurodevelopmental outcomes of children born moderate-to-late preterm (32-36 weeks gestation) is increasing. Moderate-to-late preterm birth has a negative impact on academic achievement, which may relate to differential development of executive function (EF). Prior studies reporting deficits in EF in preterm children have almost exclusively assessed EF in affectively neutral contexts in high-risk preterm children (< 32 weeks gestation). Disrupted function in motivational or emotionally charged contexts (hot EF) following preterm birth remains uninvestigated, despite evidence that preterm children show differential development of neural circuitry subserving hot EF, including reduced orbitofrontal cortex volume. The present study is the first to examine whether low-risk, healthy children born moderate-to-late preterm exhibit impairments in the development of hot EF. Preterm children at age 4.5 years were less likely to choose larger, delayed rewards across all levels of reward magnitude on a delay discounting task using tangible rewards, but performed more similarly to their full-term peers on a delay aversion task involving abstract rewards and on measures of cool EF. The relationship between gestational age at birth and selection of delayed rewards extended across the entire gestational age range of the sample (32-42 weeks), and remained significant after controlling for intelligence and processing speed. Results imply that there is not a finite cut-off point at which children are spared from potential long-term neurodevelopmental effects of PT birth. Further investigation of reward processing and hot EF in individuals with a history of PT birth is warranted given the susceptibility of prefrontal cortex development to early environmental variations.
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