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Published on: December 14, 2014
Altered Parietal Activation during Non-symbolic Number Comparison in Children with Prenatal Alcohol Exposure
Keri J Woods1,2, Sandra W Jacobson2,3,4, Christopher D Molteno4
1Division of Biomedical Engineering, Department of Human Biology, University of Cape Town, Cape Town, South Africa.
Insights
Prenatal alcohol exposure impacts brain function in children, affecting non-symbolic number processing in parietal regions. This study reveals altered brain activation in children exposed to alcohol, impacting their numerical cognition.
Area of Science:
- Neuroscience
- Developmental Psychology
- Cognitive Science
Background:
- Prenatal alcohol exposure is known to affect cognitive functions, particularly number processing, which relies on parietal lobe functioning.
- Previous research has identified alcohol-related alterations in parietal brain activation during symbolic number tasks.
- The neural underpinnings of non-symbolic number comparison and the numerical distance effect in relation to prenatal alcohol exposure remain largely uninvestigated.
Purpose of the Study:
- To investigate the effects of prenatal alcohol exposure on brain activation patterns during non-symbolic number comparison.
- To examine differences in neural correlates of the numerical distance effect in children with varying levels of fetal alcohol exposure.
- To explore the role of specific parietal regions (IPS, PSPL, AG) in number processing following prenatal alcohol exposure.
Main Methods:
- Functional magnetic resonance imaging (fMRI) was used to assess brain activation in 27 children (FAS/PFAS, heavily exposed, controls).
- A non-symbolic number comparison task with varying difficulty levels was administered.
- Analyses focused on five parietal regions of interest: bilateral horizontal intraparietal sulci (IPS), bilateral posterior superior parietal lobules (PSPL), and left angular gyrus (left AG).
Main Results:
- While performance did not differ between groups, controls showed greater activation in the right PSPL and right IPS compared to exposed children.
- Heavily exposed children exhibited increased recruitment of the left AG with increasing task difficulty, suggesting a compensatory mechanism.
- In non-syndromal heavily exposed children, the right PSPL showed impaired activation, while the right IPS remained relatively spared.
Conclusions:
- Prenatal alcohol exposure affects neural processing of non-symbolic quantity representations in the parietal lobe.
- These findings extend previous research, indicating that mental representation of relative quantity is compromised for both symbolic and non-symbolic formats due to fetal alcohol exposure.
- The study highlights the differential impact of alcohol exposure on specific parietal regions involved in numerical cognition.
Abstract:
Number processing is a cognitive domain particularly sensitive to prenatal alcohol exposure, which relies on intact parietal functioning. Alcohol-related alterations in brain activation have been found in the parietal lobe during symbolic number processing. However, the effects of prenatal alcohol exposure on the neural correlates of non-symbolic number comparison and the numerical distance effect have not been investigated. Using functional magnetic resonance imaging (fMRI), we examined differences in brain activation associated with prenatal alcohol exposure in five parietal regions involved in number processing during a non-symbolic number comparison task with varying degrees of difficulty. fMRI results are presented for 27 Cape Colored children (6 fetal alcohol syndome (FAS)/partial FAS, 5 heavily exposed (HE) non-sydromal, 16 controls; mean age ± SD = 11.7 ± 1.1 years). Fetal alcohol exposure was assessed by interviewing mothers using a timeline follow-back approach. Separate subject analyses were performed in each of five regions of interest, bilateral horizontal intraparietal sulci (IPS), bilateral posterior superior parietal lobules (PSPL), and left angular gyrus (left AG), using the general linear model with predictors for number comparison and difficulty level. Mean percent signal change for each predictor was extracted for each subject for each region to examine group differences and associations with continuous measures of alcohol exposure. Although groups did not differ in performance, controls activated the right PSPL more during non-symbolic number comparison than exposed children, but this was not significant after controlling for maternal smoking, and the right IPS more than children with fetal alcohol syndrome (FAS) or partial FAS. More heavily exposed children recruited the left AG to a greater extent as task difficulty increased, possibly to compensate, in part, for impairments in function in the PSPL and IPS. Notably, in non-syndromal heavily exposed children activation was impaired in the right PSPL, but spared in the right IPS. These results extend previous findings of poor right IPS recruitment during symbolic number processing in FAS/PFAS, indicating that mental representation of relative quantity is affected by prenatal alcohol exposure for both symbolic and non-symbolic representations of quantity.
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