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Cardiac Magnetic Resonance Imaging in Individuals With Prenatal Alcohol Exposure
Danielle Beaulieu1, Sarah Treit1, Joseph J Pagano2
1Department of Biomedical Engineering, University of Alberta, Edmonton, Alberta, Canada.
Insights
Children with prenatal alcohol exposure (PAE) showed no heart abnormalities on MRI, but had smaller brain volumes and sex-specific body composition changes compared to controls.
Area of Science:
- Neuroscience
- Cardiology
- Pediatrics
Background:
- Prenatal alcohol exposure (PAE) can harm multiple body systems, including the heart.
- Previous MRI studies in humans with PAE primarily focused on brain effects.
- This study investigates cardiac structure and function, brain volumes, and body composition in children and adolescents with PAE.
Purpose of the Study:
- To assess heart structure and function using MRI in children and adolescents with PAE.
- To evaluate brain volumes in individuals with PAE.
- To examine body composition differences in relation to PAE.
Main Methods:
- Acquired 3T MRI scans of the heart, brain, and abdomen from 17 children/adolescents with PAE and 53 controls.
- Measured cardiac parameters (ejection fraction, strain, etc.), brain volumes (cerebellum, caudate, etc.), and body composition (fat, muscle).
Main Results:
- No cardiac abnormalities were detected in the PAE group via MRI or expert evaluation.
- Individuals with PAE exhibited smaller cerebellum, caudate, and globus pallidus volumes.
- Sex-specific body composition differences were observed: higher BMI and subcutaneous fat in females with PAE, lower in males with PAE.
Conclusions:
- Children with PAE do not present with cardiac structural or functional abnormalities on MRI.
- PAE is associated with reduced brain volumes and sex-specific alterations in body composition.
- MRI findings highlight the complex, system-specific impacts of PAE.
Background:
Prenatal alcohol exposure (PAE) has teratogenic effects on numerous body systems including the heart. However, research magnetic resonance imaging (MRI) studies in humans with PAE have thus far been limited to the brain. This study aims to use MRI to examine heart structure and function, brain volumes, and body composition in children and adolescents with PAE.
Methods:
Heart, brain, and abdominal 3T MRI of 17 children, adolescents, and young adults with PAE and 53 unexposed controls was acquired to measure: (1) left ventricular ejection fraction, end-diastolic volume, end-systolic volume, stroke volume, cardiac output, longitudinal strain, circumferential strain, and heart mass; (2) total brain, cerebellum, white matter, grey matter, caudate, thalamus, putamen, and globus pallidus volumes; and (3) subcutaneous fat, visceral fat, muscle fat, and muscle (body composition).
Results:
Cardiac MRI revealed no abnormalities in the PAE group on evaluation by a paediatric cardiologist and by statistical comparison with a control group. Cardiac parameters in both groups were in line with previous reports, including expected sex- and age-related differences. Cerebellum, caudate, and globus pallidus volumes were all smaller. Body mass index and subcutaneous fat percent were higher in females with PAE relative to control females, but lower in males with PAE relative to control males.
Conclusions:
Children with PAE did not have abnormalities in MRI-derived measures of cardiac structure or function despite smaller brain volumes and sex-specific differences in body composition relative to healthy controls.
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