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Published on: December 3, 2014
Spinal Imaging Findings of Open Spinal Dysraphisms on Fetal and Postnatal MRI
U D Nagaraj1, K S Bierbrauer2, C B Stevenson2
1From the Department of Radiology and Medical Imaging (U.D.N., B.Z., B.M.K.-F.) usha.nagaraj@cchmc.org.
Background And Purpose:
Fetal MRI has become a valuable tool in the evaluation of open spinal dysraphisms making studies comparing prenatal and postnatal MRI findings increasingly important. Our aim was to determine the accuracy of predicting the level of the spinal dysraphic defect of open spinal dysraphisms on fetal MR imaging and to report additional findings observed when comparing fetal and postnatal MR imaging of the spine in this population.
Materials And Methods:
A single-center retrospective analysis was performed of fetal MRIs with open spinal dysraphisms from 2004 through 2016 with available diagnostic postnatal spine MR imaging. Images were reviewed by 2 board-certified fellowship-trained pediatric neuroradiologists. Corresponding clinical/operative reports were reviewed.
Results:
One hundred nineteen fetal MRIs of open spinal dysraphisms were included. The level of the osseous defect between fetal and postnatal MR imaging was concordant in 42.9% (51/119) of cases and was 1 level different in 39% (47/119) of cases. On postnatal MR imaging, type II split cord malformation was seen in 8.4% (10/119) of cases, with only 50% (5/10) of these cases identified prospectively on fetal MR imaging. Syrinx was noted in 3% (4/119) of prenatal studies, all cervical, all confirmed on postnatal MR imaging.
Conclusions:
Fetal MR imaging is accurate in detecting the level of the spinal dysraphic defect, which has an impact on prenatal counseling, neurologic outcomes, and eligibility for fetal surgery. In addition, fetal MR imaging is limited in its ability to detect split cord malformations in patients with open spinal dysraphisms. Although rare, fetal MR imaging has a high specificity for detection of cervical spinal cord syrinx.
Insights
Fetal MRI accurately predicts the level of spinal dysraphisms, aiding prenatal counseling and surgical planning. However, it has limitations in detecting split cord malformations.
Area of Science:
- Medical imaging
- Pediatric radiology
- Neuroscience
Background:
- Fetal MRI is crucial for evaluating open spinal dysraphisms.
- Comparing prenatal and postnatal MRI findings is essential for accuracy.
Purpose of the Study:
- To assess fetal MRI's accuracy in predicting the level of spinal dysraphic defects.
- To identify additional findings by comparing fetal and postnatal spine MRIs.
Main Methods:
- Retrospective analysis of 119 fetal MRIs (2004-2016) with open spinal dysraphisms and postnatal imaging.
- Review by two pediatric neuroradiologists; analysis of clinical/operative reports.
Main Results:
- Concordance in osseous defect level between fetal and postnatal MRI was 42.9%.
- Split cord malformation (Type II) was identified in 8.4% of postnatal MRIs, with only 50% detected prenatally.
- Cervical spinal cord syrinx was noted in 3% of fetal studies and confirmed postnatally.
Conclusions:
- Fetal MRI accurately detects the level of spinal dysraphic defects, impacting prenatal care and surgical decisions.
- Fetal MRI has limitations in detecting split cord malformations in open spinal dysraphisms.
- Fetal MRI demonstrates high specificity for cervical spinal cord syrinx detection.
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