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Published on: May 5, 2018
Neuroimaging and Cerebrovascular Changes in Fetuses with Complex Congenital Heart Disease
Flaminia Vena1,2, Lucia Manganaro3, Valentina D'Ambrosio1
1Department of Maternal and Child Health and Urological Sciences, Umberto I Hospital, Sapienza University of Rome, Viale del Policlinico 155, 00161 Rome, Italy.
Insights
Congenital heart diseases (CHDs) impact fetal brain development. Specific CHD types correlate with altered blood flow (Doppler velocimetry) and reduced head circumference, indicating potential brain injury.
Area of Science:
- Cardiology
- Neurology
- Fetal Medicine
Background:
- Congenital heart diseases (CHDs) are linked to neurocognitive deficits and developmental delays.
- Understanding the relationship between CHD types and fetal brain development is crucial.
Purpose of the Study:
- To correlate specific congenital heart disease (CHD) types with Doppler velocimetry findings.
- To investigate fetal brain abnormalities using magnetic resonance imaging (MRI) in fetuses with CHDs.
Main Methods:
- Cross-sectional study of 63 singleton pregnancies with complex CHDs (LSOL, RSOL, MTC).
- Utilized fetal echocardiography, ultrasound, fetal brain MRI, and genetic counseling.
- Analyzed Doppler velocimetry (UA-PI, MCA-PI) and head circumference (HC).
Main Results:
- Significant Doppler velocimetry differences observed across CHD groups.
- Right-sided obstructive lesions (RSOL) associated with higher umbilical artery pulsatility index (UA-PI).
- Left-sided obstructive lesions (LSOL) linked to lower middle cerebral artery pulsatility index (MCA-PI) (p=0.036).
- Reduced head circumference (HC) significantly correlated with brain injury on MRI (p=0.003).
Conclusions:
- Fetal hemodynamic changes and impaired brain growth are associated with left- and right-sided obstructive cardiac lesions.
- Prenatal evaluation of the central nervous system (CNS) in fetuses with CHDs is vital.
- This assessment aids in predicting postnatal abnormalities.
Abstract:
Background: Congenital heart diseases (CHDs) are often associated with significant neurocognitive impairment and neurological delay. This study aims to elucidate the correlation between type of CHD and Doppler velocimetry and to investigate the possible presence of fetal brain abnormalities identified by magnetic resonance imaging (MRI). Methods: From July 2010 to July 2020, we carried out a cross-sectional study of 63 singleton pregnancies with a diagnosis of different types of complex CHD: LSOL (left-sided obstructive lesions; RSOL (right-sided obstructive lesions) and MTC (mixed type of CHD). All patients underwent fetal echocardiography, ultrasound evaluation, a magnetic resonance of the fetal brain, and genetic counseling. Results: The analysis of 63 fetuses shows statistically significant results in Doppler velocimetry among the different CHD groups. The RSOL group leads to higher umbilical artery (UA-PI) pressure indexes values, whereas the LSOL group correlates with significantly lower values of the middle cerebral artery (MCA-PI) compared to the other subgroups (p = 0.036), whereas the RSOL group shows a tendency to higher pulsatility indexes in the umbilical artery (UA-PI). A significant correlation has been found between a reduced head circumference (HC) and the presence of brain injury at MRI (p = 0.003). Conclusions: Congenital left- and right-sided cardiac obstructive lesions are responsible for fetal hemodynamic changes and brain growth impairment. The correct evaluation of the central nervous system (CNS) in fetuses affected by CHD could be essential as prenatal screening and the prediction of postnatal abnormalities.
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