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Published on: February 28, 2021
Multimodality Imaging Evaluation of Fetal Spine Anomalies with Postnatal Correlation
Hassan Aboughalia1, Sakura Noda1, Teresa Chapman1
1From the Departments of Radiology (H.A., S.N., T.C., M.M.), Laboratory Medicine and Pathology (G.H.D.), and Neurological Surgery (S.R.B.), University of Washington Medical Center, 1959 NE Pacific St, Seattle, WA 98195; Departments of Radiology (S.N., T.C.), Laboratory Medicine and Pathology (G.H.D.), and Neurological Surgery (S.R.B.), Seattle Children's Hospital, Seattle, Wash; Department of Radiology and Biomedical Imaging, Yale School of Medicine, New Haven, Conn (M.V.R.); and Department of Radiology, NYU Long Island School of Medicine, Mineola, NY (D.S.K.).
Insights
Early diagnosis of congenital spinal anomalies via fetal imaging is crucial for planning treatments and improving outcomes. Key categories include spinal dysraphism, vertebral anomalies, and sacrococcygeal teratomas.
Area of Science:
- Medical imaging
- Pediatric radiology
- Fetal medicine
Background:
- Congenital spine anomalies cause significant perinatal morbidity and lifelong disability.
- Early diagnosis is essential for effective treatment planning and improved functional outcomes.
- Key anomalies include spinal dysraphism, vertebral segmentation/fusion issues, and sacrococcygeal teratomas.
Purpose of the Study:
- To review the classification and imaging characteristics of common congenital spinal anomalies.
- To highlight the roles of ultrasound and MRI in diagnosis and management planning.
- To emphasize the importance of timely diagnosis for optimizing patient care.
Main Methods:
- Review of common congenital spinal anomalies.
- Discussion of diagnostic imaging modalities, including ultrasound (US) and magnetic resonance imaging (MRI).
- Emphasis on the utility of fetal MRI in complex cases and interventions.
Main Results:
- Spinal dysraphism is categorized into open (emergency closure) and closed subtypes.
- Vertebral anomalies include formation (e.g., hemivertebrae) and segmentation (e.g., block vertebrae) types.
- Sacrococcygeal teratomas are the most frequent fetal pelvic masses with variable prognoses.
Conclusions:
- Accurate fetal diagnosis of spinal anomalies guides prenatal, perinatal, and postnatal management.
- Ultrasound is the primary screening tool, while MRI is vital for problem-solving and complex interventions.
- Timely diagnosis significantly impacts functional outcomes for affected infants and children.
Abstract:
Congenital anomalies of the spine are associated with substantial morbidity in the perinatal period and may affect the rest of the patient's life. Accurate early diagnosis of spinal abnormalities during fetal imaging allows prenatal, perinatal, and postnatal treatment planning, which can substantially affect functional outcomes. The most common and clinically relevant congenital anomalies of the spine fall into three broad categories: spinal dysraphism, segmentation and fusion anomalies of the vertebral column, and sacrococcygeal teratomas. Spinal dysraphism is further categorized into one of two subtypes: open spinal dysraphism and closed spinal dysraphism. The latter category is further subdivided into those with and without subcutaneous masses. Open spinal dysraphism is an emergency and must be closed at birth because of the risk of infection. In utero closure is also offered at some fetal centers. Sacrococcygeal teratomas are the most common fetal pelvic masses and the prognosis is variable. Finally, vertebral body anomalies are categorized into formation (butterfly and hemivertebrae) and segmentation (block vertebrae) anomalies. Although appropriate evaluation of the fetal spine begins with US, which is the initial screening modality of choice, MRI is increasingly important as a problem-solving tool, especially given the recent advances in fetal MRI, its availability, and the complexity of fetal interventions. Online supplemental material is available for this article. ©RSNA, 2021.
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