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Use of a three-dimensional, normative database of pediatric craniofacial morphology for modern anthropometric analysis.

机译:使用三维标准化的儿科颅面形态数据库进行现代人体测量学分析。

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摘要

BACKGROUND: Surgical correction of cranial abnormalities, including craniosynostosis, requires knowledge of normal skull shape to appreciate dysmorphic variations. However, the inability of current anthropometric techniques to adequately characterize three-dimensional cranial shape severely limits morphologic study. The authors previously introduced three-dimensional vector analysis, a quantitative method that maps cranial form from computed tomography data. In this article, the authors report its role in the development and validation of a normative database of pediatric cranial morphology and in clinical analysis of craniosynostosis. METHODS: Normal pediatric craniofacial computed tomography data sets were acquired retrospectively from the Duke University Picture Archive and Communications System. Age increments ranging from 1 to 72 months were predetermined for scan acquisition. Three-dimensional vector analysis was performed on individual data sets, generating a set of point clouds. Averages and standard deviations for the age and gender bins of point clouds were used to create normative three-dimensional models. Anthropometric measurements from three-dimensional vector analysis models were compared with published matched data. Preoperative and postoperative morphologies of a sagittal synostosis case were analyzed using three-dimensional vector analysis and the normative database. RESULTS: Three- and two-dimensional representations were created to define age-incremental normative models. Length and width dimensions agreed with previously published data. Detailed morphologic analysis is provided for a case of sagittal synostosis by applying age- and gender-matched data. CONCLUSIONS: Three-dimensional vector analysis provides accurate, comprehensive description of cranial morphology with quantitative graphic output. The method enables development of an extensive pediatric normative craniofacial database. Future application of these data will facilitate analysis of cranial anomalies and assist with clinical assessment.
机译:背景:颅骨畸形的外科矫正,包括颅突融合症,需要了解正常颅骨形状才能了解畸形变异。但是,当前的人体测量技术无法充分表征三维颅骨形状,严重限制了形态学研究。作者先前介绍了三维矢量分析,这是一种定量方法,可以从计算机断层扫描数据中绘制出颅骨形态。在本文中,作者报告了其在开发和验证小儿颅骨形态学规范数据库以及在颅骨鼻窦炎临床分析中的作用。方法:回顾性地从杜克大学图片档案和通信系统中获取正常的儿科颅面计算机断层扫描数据集。预定进行扫描获取的年龄范围为1到72个月。对单个数据集执行了三维矢量分析,生成了一组点云。使用点云的年龄和性别分类的平均值和标准差来创建标准的三维模型。来自三维矢量分析模型的人体测量结果与已发布的匹配数据进行了比较。使用三维矢量分析和规范数据库分析了矢状突突病病例的术前和术后形态。结果:创建了三维表示形式以定义年龄递增的规范模型。长度和宽度尺寸与以前发布的数据一致。通过应用年龄和性别匹配的数据,可以对矢状突突的病例进行详细的形态学分析。结论:三维矢量分析提供了准确,全面的颅骨形态学描述,并带有定量的图形输出。该方法能够开发广泛的儿科规范颅面数据库。这些数据的未来应用将有助于颅骨异常的分析并有助于临床评估。

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