2020Journal of Craniofacial SurgeryRequires access

What Is the Skull Structure Influence of Squamosal Suture Synostosis in Nonsyndromic and Syndromic Crouzon Craniosynostosis?: Erratum

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Abstract

In the article that appeared on page 1671 of the September 2019 issue of the Journal of Craniofacial Surgery, Figure 1 had a typo in its legend. The figure, and its corrected legend, are as follows:FIGURE 1: The volumetric measurements process. The cranial volume (A) was calculated from the mask set with a soft tissue Hounsfield Threshold. The area inside of the cranial vault is included as the volume. The plane defined by a perpendicular to sagittal plane, connected the point 1 cm higher than the middle point of bilateral uppermost orbital rim points and the internal occipital protuberance, separated the skull and brain into upper and lower portions (B,C). Subsegment planes followed the posterior borders of the small wings of the sphenoid and the superior border of the petrous temporal bone, separated the lower portions of brain into 6 parts (D–F). The segmented anterior, middle and posterior cranial fossa volume were shown from intracranial view (E) and subcranial view (F). A nonsyndromic squamosal synostosis patient (12 months of age, female) was used as an example.

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What this paper is about

In the article that appeared on page 1671 of the September 2019 issue of the Journal of Craniofacial Surgery, Figure 1 had a typo in its legend. The figure, and its corrected legend, are as follows:FIGURE 1: The volumetric measurements process. The cranial volume (A) was calculated from the mask set with a soft tissue Hounsfield Threshold. The area inside of the cranial vault is included as the volume. The plane defined by a perpendicular to sagittal plane, connected the point 1 cm higher than the middle point of bilateral uppermost orbital rim points and the internal occipital protuberance, separated the skull and brain into upper and lower portions (B,C). Subsegment planes followed the posterior borders of the small wings of the sphenoid and the superior border of the petrous temporal bone, separated the lower portions of brain into 6 parts (D–F). The segmented anterior, middle and posterior cranial fossa volume were shown from intracranial view (E) and subcranial view (F). A nonsyndromic squamosal synostosis patient (12 months of age, female) was used as an example.

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Available abstract

In the article that appeared on page 1671 of the September 2019 issue of the Journal of Craniofacial Surgery, Figure 1 had a typo in its legend. The figure, and its corrected legend, are as follows:FIGURE 1: The volumetric measurements process. The cranial volume (A) was calculated from the mask set with a soft tissue Hounsfield Threshold. The area inside of the cranial vault is included as the volume. The plane defined by a perpendicular to sagittal plane, connected the point 1 cm higher than the middle point of bilateral uppermost orbital rim points and the internal occipital protuberance, separated the skull and brain into upper and lower portions (B,C). Subsegment planes followed the posterior borders of the small wings of the sphenoid and the superior border of the petrous temporal bone, separated the lower portions of brain into 6 parts (D–F). The segmented anterior, middle and posterior cranial fossa volume were shown from intracranial view (E) and subcranial view (F). A nonsyndromic squamosal synostosis patient (12 months of age, female) was used as an example.

Key concepts: Craniosynostosis, Crouzon syndrome, Synostosis, Skull, Craniosynostoses, Fibrous joint, Medicine, Anatomy

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What Is the Skull Structure Influence of Squamosal Suture Synostosis in Nonsyndromic and Syndromic Crouzon Craniosynostosis?: Erratum — Research Paper | ScholarLens