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Updated: Apr 21, 2026

State of the Art Cranial Ultrasound Imaging in Neonates
Published on: February 2, 2015
Intracranial volume is normal in infants with sagittal synostosis
Sara Fischer1, Giovanni Maltese, Peter Tarnow
1Department of Plastic Surgery.
Insights
Children with premature sagittal synostosis, a condition causing an elongated skull, have normal intracranial volume (ICV). This study precisely measured ICV in affected children and controls, finding no significant differences.
Area of Science:
- Pediatric Neurosurgery
- Craniofacial Surgery
- Medical Imaging
Background:
- Premature sagittal synostosis causes scaphocephaly, an elongated, narrow skull shape.
- The intracranial volume (ICV) in these children has not been definitively established.
- Accurate ICV assessment is crucial for understanding the condition's impact.
Purpose of the Study:
- To precisely determine the intracranial volume (ICV) in a large cohort of children with premature isolated sagittal synostosis.
- To compare the ICV of these children with a sex- and age-matched control group.
- To clarify whether scaphocephaly is associated with altered ICV.
Main Methods:
- Identified 143 patients with isolated sagittal synostosis from the Göteborg Craniofacial Registry.
- Matched each patient with a sex- and age-controlled individual who underwent CT scans.
- Measured ICV using a semi-automatic MATLAB program and the Cavalieri principle on CT slices.
Main Results:
- The mean ICV for children with sagittal synostosis was 866 ± 13 ml.
- The mean ICV for the control group was 870 ± 15 ml.
- No significant differences in ICV were found between cases and controls, even in subgroup analyses by sex and age.
Conclusions:
- Children with premature isolated sagittal synostosis have a normal intracranial volume.
- Precise ICV determination and appropriate controls confirm that scaphocephaly does not inherently involve altered brain volume.
- This finding aids in understanding the pathophysiology and management of sagittal synostosis.
Abstract:
Premature sagittal synostosis results in an elongated, narrow skull shape, scaphocephaly. It has been unclear whether the intracranial volume (ICV) of these children is different from that of normal children. The aim of the present study was to precisely determine the ICV in a large cohort of children with premature sagittal synostosis and to compare it to the ICV of a sex- and age-matched control group. All patients (n = 143) with isolated sagittal synostosis registered in the Göteborg Craniofacial Registry until the end of 2012 with a preoperative CT examination were identified. For each case, a sex- and age- (±30 days) matched control was identified from children who had undergone CT for post-traumatic or neurological reasons. The ICV was measured in a semi-automatic MATLAB program with functions such as region growing, watershed, and thresholding in axial CT slices. The ICV was calculated using the Cavalieri principle. The mean (± SEM) values of ICV for children with sagittal synostosis and for corresponding controls were 866 ± 13 ml and 870 ± 15 ml, respectively. The mean ages of these groups were 173 ± 8 days and 172 ± 8 days, respectively. Subgroup analysis of sex and age at CT (≤180 days and >180 days) did not reveal any differences in ICV between cases and controls. Precise determination of ICV in addition to the use of adequate controls has made it possible to conclude that children with premature isolated sagittal synostosis have a normal ICV.
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