Key result
Magnetic resonance imaging demonstrated a discrepancy between the size of the brain stem and the foramen magnum in all 5 children with achondroplasia.
Why the study?
Does magnetic resonance imaging identify medullary compression in children with achondroplasia?
Observational (n=5)
Does magnetic resonance imaging identify medullary compression in children with achondroplasia?
MRI can identify discrepancies between brain stem and foramen magnum size in children with achondroplasia, potentially identifying those at risk for life-threatening medullary compression.
May support MRI for risk stratification in achondroplasia; leaves open validation for medullary compression prediction.
Children with achondroplasia may be at increased risk of developing apneic episodes and of dying unexpectedly. The risks seem to be related to neural axis compression by an abnormal cranial base and may be complicated by the development of hydrocephalus. We used magnetic resonance imaging to study five children with achondroplasia. All of them demonstrated a discrepancy between the size of the brain stem and the foramen magnum. Comprehensive prospective assessment of infants with achondroplasia, including the use of new imaging techniques, will provide important information concerning the natural history of the relationship of the neural axis to the bony posterior fossa and upper cervical spine in this condition. It may also help to identify those patients at risk before the development of life-threatening medullary compression.
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I. T. Thomas (1988) conducted an observational in Achondroplasia (n=5). Magnetic resonance imaging was evaluated on Discrepancy between the size of the brain stem and the foramen magnum. Magnetic resonance imaging demonstrated a discrepancy between the size of the brain stem and the foramen magnum in all 5 children with achondroplasia.
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