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Brain volume in infants with metopic synostosis: Less white matter volume with an accelerated growth pattern in early
L Gaillard1, M C Tjaberinga1, M H G Dremmen2
1Department of Plastic and Reconstructive Surgery and Hand Surgery, Erasmus MC-Sophia Children's Hospital, University Medical Center Rotterdam, Rotterdam, The Netherlands.
Insights
Metopic synostosis is linked to smaller white matter volumes and accelerated white matter growth, similar to autism. Other brain volumes were comparable between patients and controls, suggesting intrinsic brain anomalies.
Area of Science:
- Neuroscience
- Developmental Biology
- Medical Imaging
Background:
- Metopic synostosis, premature fusion of the metopic suture, is associated with neurodevelopmental disorders.
- While intracranial hypertension risk is low, the underlying brain pathophysiology remains unclear.
Purpose of the Study:
- To investigate global and regional brain volumes in non-syndromic metopic synostosis patients using preoperative MRI.
- To identify potential brain anomalies contributing to associated neurodevelopmental disorders.
Main Methods:
- Utilized HyperDenseNet for processing MRI scans to quantify intracranial volume (TIV), total brain volume (TBV), grey matter volume (TGMV), white matter volume (TWMV), and cerebrospinal fluid volume (TCBFV).
- Employed linear regression to compare brain volumes between 45 metopic synostosis patients and 14 controls, adjusting for age and sex.
- Conducted secondary analyses of lobe-specific grey matter volumes.
Main Results:
- No significant differences were found in TIV, TBV, TGMV, or TCBFV between patients and controls.
- Total white matter volume (TWMV) was significantly smaller in metopic synostosis patients.
- Accelerated white matter growth patterns were observed in patients, mirroring patterns seen in autism spectrum disorder.
Conclusions:
- Metopic synostosis is associated with reduced TWMV and altered white matter growth dynamics.
- Secondary analyses indicated larger cingulate and temporal grey matter volumes.
- Findings suggest a generalized intrinsic brain anomaly in the pathophysiology of neurodevelopmental disorders linked to metopic synostosis.
Abstract:
Metopic synostosis patients are at risk for neurodevelopmental disorders despite a negligible risk of intracranial hypertension. To gain insight into the underlying pathophysiology of metopic synostosis and associated neurodevelopmental disorders, we aimed to investigate brain volumes of non-syndromic metopic synostosis patients using preoperative MRI brain scans. MRI brain scans were processed with HyperDenseNet to calculate total intracranial volume (TIV), total brain volume (TBV), total grey matter volume (TGMV), total white matter volume (TWMV) and total cerebrospinal fluid volume (TCBFV). We compared global brain volumes of patients with controls corrected for age and sex using linear regression. Lobe-specific grey matter volumes were assessed in secondary analyses. We included 45 metopic synostosis patients and 14 controls (median age at MRI 0.56 years [IQR 0.36] and 1.1 years [IQR 0.47], respectively). We found no significant differences in TIV, TBV, TGMV or TCBFV in patients compared to controls. TWMV was significantly smaller in patients (-62,233 mm3 [95% CI = -96,968; -27,498], Holm-corrected p = 0.004), and raw data show an accelerated growth pattern of white matter in metopic synostosis patients. Grey matter volume analyses per lobe indicated increased cingulate (1378 mm3 [95% CI = 402; 2355]) and temporal grey matter (4747 [95% CI = 178; 9317]) volumes in patients compared to controls. To conclude, we found smaller TWMV with an accelerated white matter growth pattern in metopic synostosis patients, similar to white matter growth patterns seen in autism. TIV, TBV, TGMV and TCBFV were comparable in patients and controls. Secondary analyses suggest larger cingulate and temporal lobe volumes. These findings suggest a generalized intrinsic brain anomaly in the pathophysiology of neurodevelopmental disorders associated with metopic synostosis.
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