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Brain morphology in nonsyndromic unicoronal craniosynostosis

机译:非综合征性单冠状颅突狭窄的脑形态

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Studies of isolated craniosynostosis have shown biomechanical and biochemical influences on the craniofacial phenotype, resulting from both genetic and epigenetic factors. Much less attention has been directed toward the morphology of the brain, despite the interactive nature of the developing skull and developing brain. The aim of this study is to define the morphology of the brain in nonsyndromic unilateral coronal synostosis (UCS) in order to form more complete hypotheses about the cause of craniosynostosis. Landmark coordinate data were collected from 3D magnetic resonance image reconstructions of the brain in a sample of UCS patients and an age-matched morphologically normal cohort. These data were analyzed using Euclidean distance matrix analysis. The results of our study demonstrate that despite the basic similarity of overall shape of the brain and skull in UCS, the effects of craniosynostosis on the brain are not localized to structures immediately adjacent to the fused suture or to the endocranial surface of the skull. Rather, alterations are observed throughout the volume of the brain, with subcortical structures altered in conjunction with cortical changes. These results indicate that the morphological correlates are different for brain and skull and suggest that there is a large degree of independence in the developmental trajectories of the brain and skull. (c) 2005 Wiley-Liss, Inc.
机译:对孤立的颅骨前突的研究表明,遗传和表观遗传因素对颅面表型具有生物力学和生化影响。尽管正在发展的头骨和正在发展的大脑具有交互性,但对大脑形态的关注却很少。这项研究的目的是定义非综合征性单侧冠状动脉突触(UCS)的大脑形态,以形成关于颅突的原因的更完整的假设。具有里程碑意义的坐标数据是从UCS患者样本和年龄匹配的形态正常人群的大脑3D磁共振图像重建中收集的。这些数据使用欧氏距离矩阵分析进行了分析。我们的研究结果表明,尽管UCS的大脑和颅骨的总体形状基本相似,但颅突对脑的影响并不局限于紧靠融合缝线或颅骨的颅内表面的结构。相反,在整个大脑体积中都观察到了变化,皮层下结构随着皮层变化而变化。这些结果表明,大脑和颅骨的形态学相关性不同,表明大脑和颅骨的发展轨迹具有很大的独立性。 (c)2005 Wiley-Liss,Inc.

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