Monitoring Skull Base Abnormalities in Children with Osteogenesis Imperfecta - Review of Current Practice and a
S Wadanamby1, S El Garwany2, Dja Connolly3
1Department of Oncology and Metabolism, University of Sheffield, Damer Street Building, Sheffield, S10 2TH, UK.
Insights
Skull base imaging in children with osteogenesis imperfecta (OI) reveals low rates of abnormalities and symptoms, suggesting current imaging frequency may be excessive. A new risk-stratified approach is proposed for skull base imaging in severe OI.
Area of Science:
- Pediatric Radiology
- Skeletal Dysplasias
- Craniofacial Imaging
Background:
- Osteogenesis imperfecta (OI) is a rare genetic disorder characterized by bone fragility.
- Skull base abnormalities are common in severe OI, but their clinical significance and optimal imaging surveillance remain debated.
- There is a lack of national consensus regarding the benefits of routine skull base imaging in children with OI.
Purpose of the Study:
- To analyze and correlate clinical symptoms with radiological images of the skull base in children with severe osteogenesis imperfecta (OI).
- To evaluate the prevalence of specific cranio-cervical abnormalities on imaging in pediatric OI patients.
- To assess the utility and potential overutilization of serial skull base imaging in this population.
Main Methods:
- Retrospective analysis of clinical data and imaging (radiographs, CT, MRI) from 94 children with severe OI (2012-2018).
- Assessment for specific abnormalities: Wormian bones, platybasia, basilar impression, and basilar invagination.
- Correlation of imaging findings with available clinical symptoms and evaluation of concordance between different imaging modalities.
Main Results:
- Platybasia was observed in 62% of patients, basilar impression in 11%, and basilar invagination in 1%.
- A significant association was found between platybasia and basilar impression (p=0.03).
- Fewer than 5% of patients exhibited positive clinical symptoms at the time of imaging; concordance between MRI and radiographs varied for different abnormalities.
Conclusions:
- The low prevalence of radiologically identified cranio-cervical abnormalities and associated clinical symptoms suggests that current serial imaging frequency may be excessive.
- A risk-stratification approach for skull base imaging in pediatric OI is proposed.
- Further prospective studies are needed to clarify optimal imaging protocols and parameters for MRI referral.
Objectives:
In the context of a lack of national consensus on the benefits of skull base imaging in children with osteogenesis imperfecta (OI), this study aims to analyse and correlate the clinical symptoms and radiological images of children with severe OI.
Methods:
A retrospective case notes and image analysis was carried out on children with complex OI between 2012 and 2018 at a specialist tertiary centre. Data were collected on patient demographic factors, clinical data, imaging findings (presence of Wormian bones, platybasia, basilar impression (McGregor's technique) and basilar invagination (McRae's technique)), and clinical features at the time of imaging.
Results:
Of the 127 patients in the OI database, 94 were included. A total of 321 radiographs, 21 CT scans and 39 MRI scans were analysed. Average frequency of radiographs was 8 per 10 years. Of the 94 patients, 58 (62%), 10 (11%), 1 (1%) demonstrated platybasia, basilar impression, and basilar invagination, respectively. Of the radiographs analysed, platybasia, basilar impression, basilar invagination, and the presence of Wormian bones, could not be evaluated in 71 (22.3%), 48 (15.2%), 61 (19.5%) and 28 (9.4%) radiographs respectively (due to poor positioning, anatomical abnormalities, and poor image quality). Of the 140 radiographs with platybasia, 17 (12%) also demonstrated basilar impression compared to only 3 (2.9%) out of the 99 without platybasia (p = 0.03). No significant associations were seen between the presence of Wormian bones and basilar impression. Of the 39 MRIs, additional information on CSF flow rate, spinal cord signal and cerebellar morphology was reported in 14 (36%). There was a lack of concordance between MRI and matched radiographs in 7.1% (1/14) and 36% (5/14) for platybasia and basilar impression respectively, with full concordance for basilar invagination. Fewer than 5% had positive clinical symptoms/signs at the time of imaging; 2% (7/321) had macrocephaly, 0.6% (2/321) headache, all other neurological features were absent). Clinical features were not documented in >85% of patients.
Conclusion:
The apparent low prevalence of clinical symptoms and signs and of radiologically identified cranio-cervical abnormalities, suggests that current levels of serial imaging may be excessive. Until larger prospective studies clarify these issues, we suggest a clinical pathway for base of skull imaging which proposes a risk stratification approach to radiographic frequency and suggests parameters for proceeding to MRI.
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