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Updated: Oct 13, 2025

An Electrophysiology Protocol to Measure Reward Anticipation and Processing in Children
Published on: October 4, 2018
Prenatal metal mixture concentrations and reward motivation in children
Erik de Water1, Paul Curtin1, Chris Gennings1
1Icahn School of Medicine at Mount Sinai, New York, NY, USA.
Insights
Prenatal exposure to a mixture of toxic metals is linked to increased reward motivation in children. This may indicate a tendency to persevere or hypersensitivity to positive reinforcement during development.
Area of Science:
- Neuroscience
- Environmental Health
- Developmental Psychology
Background:
- Altered reward motivation is a hallmark of neurodevelopmental and psychiatric disorders in children.
- Prenatal development is sensitive to environmental toxicants, including metals, which can impact neural circuitry.
- Assessing reward motivation in children has been challenging but is crucial for understanding developmental disorders.
Purpose of the Study:
- To investigate the association between prenatal exposure to a mixture of neurotoxic metals and reward motivation in children.
- To examine how metal mixtures during gestation relate to goal-directed behaviors and reinforcement sensitivity.
Main Methods:
- Utilized the Progressive Ratio (PR) task to measure reward motivation in 373 children aged 6-8 years.
- Measured maternal blood concentrations of lead, manganese, zinc, arsenic, cadmium, and selenium during the 2nd and 3rd trimesters.
- Employed generalized Weighted Quantile Sum (gWQS) regression analysis, adjusting for relevant covariates.
Main Results:
- A significant association was found between the prenatal metal mixture and higher reward motivation.
- Children exposed to the metal mixture showed more lever presses and shorter response times, indicating increased motivation.
- The specific contribution of each metal varied by trimester and child sex.
Conclusions:
- Prenatal exposure to metal mixtures during the 2nd and 3rd trimesters is associated with heightened reward motivation in children.
- This heightened motivation may manifest as perseveration or hypersensitivity to positive reinforcement.
- Findings highlight the impact of in utero environmental exposures on child neurodevelopment and behavior.
Abstract:
Reward motivation is a complex umbrella term encompassing the cognitions, emotions, and behaviors involved in the activation, execution, and persistence of goal-directed behavior. Altered reward motivation in children is characteristic of many neurodevelopmental and psychiatric disorders. Previously difficult to operationalize, the Progressive Ratio (PR) task has been widely used to assess reward motivation in animal and human studies, including children. Because the neural circuitry supporting reward motivation starts developing during pregnancy, and is sensitive to disruption by environmental toxicants, including metals, the goal of this study was to examine the association between prenatal concentrations of a mixture of neurotoxic metals and reward motivation in children. We measured reward motivation by administering a PR test to 373 children ages 6-8 years enrolled in the Programming Research in Obesity, Growth, Environment and Social Stressors (PROGRESS) Study in Mexico City. Children were asked to press a response lever for a token reward; one press on the response lever was required to earn the first token and each subsequent token required an additional 10 lever presses. Maternal blood concentrations of lead, manganese, zinc, arsenic, cadmium, and selenium were measured using inductively-coupled plasma mass spectrometry during the 2nd and 3rd trimesters of pregnancy. We performed generalized Weighted Quantile Sum (gWQS) regression analyses to examine associations between the prenatal metal mixture and reward motivation; adjusting for child sex, birthweight and age; and maternal IQ, education, and socioeconomic status. The prenatal metal mixture was significantly associated with higher motivation as indicated by more lever presses (ß = 0.02, p < 0.001) and a shorter time between receiving the reinforcer and the first press (ß = 0.23, p = 0.01), and between subsequent presses (ß = 0.07, p = 0.005). Contributions of different metals to this association differed by trimester and child sex. These findings suggest that children with increased exposure to metal during the 2nd and 3rd trimesters of gestation demonstrate increased reward motivation, which may reflect a tendency to perseverate or hypersensitivity to positive reinforcement.
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