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Craniofacial Dysmorphology in Infants With Non-Syndromic Unilateral Coronal Craniosynostosis
Christopher P Bellaire1, Alex Devarajan1, James G Napoli2
1Division of Plastic and Reconstructive Surgery, Icahn School of Medicine at Mount Sinai.
Insights
Unilateral coronal craniosynostosis (UCS) causes skull deformities by fusing the coronal suture prematurely. This study quanties the resulting craniofacial changes and their link to potential neurological issues.
Area of Science:
- Craniofacial surgery
- Pediatric neurosurgery
- Developmental biology
Background:
- Unilateral coronal craniosynostosis (UCS) is a congenital disorder causing premature coronal suture fusion.
- This fusion leads to significant changes in calvarium and skull base morphology.
- Surgical intervention is often necessary to correct skull shape and prevent neurological complications.
Purpose of the Study:
- To investigate the bone dysmorphogenesis in non-syndromic UCS using geometric morphometrics.
- To quantitatively describe craniofacial development and bone dysmorphology in UCS patients.
- To explore the contribution of bone dysmorphology to neurological sequelae.
Main Methods:
- A multicenter study involving 26 non-syndromic UCS patients.
- Computed tomography scans were converted into 3D mesh models.
- 236 anatomical landmarks and semi-landmarks were used to create wireframe skull representations.
Main Results:
- Significant superior displacement of the ipsilateral orbit (harlequin eye deformity).
- Anterior displacement of the ipsilateral ear and deviation of midline skull base structures.
- Flattening of the parietal bone with impaired superior expansion.
Conclusions:
- The study demonstrates the widespread impact of premature coronal suture fusion on skull development.
- A quantitative link between bone dysmorphology and neurological sequelae in UCS is proposed.
- Novel methodologies bridge basic science and clinical research for understanding craniofacial development.
Background:
Unilateral coronal craniosynostosis (UCS) is a congenital disorder resulting from the premature suture fusion, leading to complex primary and compensatory morphologic changes in the shape of not only the calvarium and but also into the skull base. This deformity typically requires surgery to correct the shape of the skull and prevent neurologic sequelae, including increased intracranial pressure, sensory deficits, and cognitive impairment.
Methods:
The present multicenter study sought to reverse-engineer the bone dysmorphogenesis seen in non-syndromic UCS using a geometric morphometric approach. Computed tomography scans for 26 non-syndromic UCS patients were converted to three-dimensional mesh models. Two hundred thirty-six unique anatomical landmarks and semi-landmarked curves were then plotted on each model, creating wireframe representations of the Patients' skulls.
Results:
Generalized Procrustes superimposition, Principal Component Analysis, and heatmaps identified significant superior displacement of the ipsilateral orbit ("harlequin" eye deformity), anterior displacement of the ear ipsilateral to the fused coronal suture, acute deviation of midline skull base structures ipsilateral to the fused coronal suture and flattening of the parietal bone and associated failure to expand superiorly.
Conclusions:
The described technique illustrates the impact of premature coronal suture fusion on the development of the entire skull and proposes how bone dysmorphology contributes to the Patients' neurologic sequelae. By bridging novel basic science methodologies with clinical research, the present study quantitatively describes craniofacial development and bone dysmorphogenesis.
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