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Published on: January 7, 2021
MRI of the fetal posterior fossa
Catherine Adamsbaum1, Marie Laure Moutard, Christine André
1Department of Radiology, St Vincent de Paul Hospital, 82 avenue Denfert Rochereau, 75674 Paris Cedex 14, France. svp.radio@svp.ap-hop-paris.fr
Abstract:
MRI is a useful tool to complement US for imaging of the fetal posterior fossa (PF). In France, the discovery of a PF malformation in the fetus frequently leads to termination of pregnancy (80% in a personal series). However, despite improved accuracy in the diagnosis of PF abnormalities, prognosis remains uncertain. The first objective of this review is to document the normal MRI landmarks of the developing fetal PF. Because of their thinness, the visibility of the cerebellar fissures is dramatically delayed on MRI compared to macroscopic data. An important landmark is identification of the primary fissure of the vermis, normally seen at around 25-26 weeks' gestation (WG) on the sagittal slice, separating the larger posterior lobe from the anterior lobe (volume ratio around 2:1). The prepyramidal and secondary fissures are usually only identifiable after 32 WG and the hemispheric fissures are difficult to see until the end of pregnancy. Considering the signal changes, high signal on T2-weighted (T2-W) sequences is seen from 25 WG in the posterior part of the brain stem (tegmentum and ascending sensory tracts) related to myelination. The low signal intensities seen within the cerebellum on T2-W images correspond to high cellularity of grey matter (deep nuclei), as there is no myelination within the white matter before 38 WG. The second objective is to highlight the signs highly predictive of a poor neurological prognosis. Lack of pontine curvature or vermian agenesis without a PF cyst (small volume of PF) is greatly associated with poor neurological status. The third objective is to propose a diagnostic strategy in difficult cases where prognosis is important, e.g. the Dandy Walker continuum. Analysis of the cerebellum is often impossible if a PF cyst is present (whatever its nature) as the mass effect usually blurs the foliation and even impairs evaluation of the normal ratio between the posterior and anterior lobes of the vermis. Isolated cerebellar hypoplasias raise the question of prognosis and genetic counselling. Such uncertainties require an amniocentesis and a careful search for other anomalies (cerebral and extracerebral). Unilateral abnormalities of a cerebellar hemisphere can be associated with good neurological status if they are isolated. The final objective is to discuss other rare PF fetal abnormalities, such as vascular malformations and tumours.
Insights
This review details fetal posterior fossa MRI landmarks and prognostic indicators. Understanding these MRI findings is crucial for accurate diagnosis and counseling regarding fetal brain abnormalities.
Area of Science:
- Fetal imaging and neurodevelopmental abnormalities.
- Advanced neuroimaging techniques in obstetrics.
- Prenatal diagnosis and prognostic assessment.
Background:
- Magnetic Resonance Imaging (MRI) complements ultrasound for fetal posterior fossa (PF) imaging.
- PF malformations often lead to pregnancy termination, highlighting the need for accurate prognosis.
- Prognostic uncertainty persists despite improved diagnostic accuracy for PF abnormalities.
Purpose of the Study:
- To document normal MRI landmarks of the developing fetal posterior fossa.
- To identify MRI signs predictive of poor neurological prognosis.
- To propose a diagnostic strategy for complex PF abnormalities and discuss rare conditions.
Main Methods:
- Review of MRI findings in fetal posterior fossa development.
- Analysis of cerebellar fissure visibility and signal changes related to myelination.
- Correlation of specific MRI features with neurological outcomes and genetic counseling.
Main Results:
- Cerebellar fissure visibility is delayed on MRI; primary fissure seen around 25-26 weeks gestation.
- T2-weighted sequences show high signal in the brainstem (myelination) from 25 weeks gestation.
- Lack of pontine curvature or vermian agenesis predicts poor neurological status; isolated cerebellar hypoplasias require genetic counseling.
Conclusions:
- Accurate interpretation of fetal posterior fossa MRI landmarks is essential for prognosis.
- Specific MRI features like vermian agenesis or lack of pontine curvature indicate poor neurological outcomes.
- A structured diagnostic approach, including genetic assessment, is vital for managing complex fetal PF abnormalities.
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