人头测量参数的分析对牙科实践很重要

S. Arsic, M. Trandafilović, Sonja Janković, D. Ilić, Bojan Nedović, N. Vitković, M. Stojković, Milica Tufegdzic, J. Mitic, M. Trajanovic
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引用次数: 1

摘要

头测术是通过成像来测量头部,也考虑到由头部所有软组织组成的层。随着计算机断层扫描(CT)的引入,头部和颈部结构的3D重建以及角形和线性头部测量参数的3D分析成为可能。本研究旨在利用多层螺旋CT (MSCT)图像的二维重建来确定头颅特征参数,这些参数是计算机设计人头骨参数几何数学模型(PGMM)所必需的。我们对20例成年患者的CT扫描(男性12例,女性8例)进行了研究,这些CT扫描来自尼什临床中心的放射学档案。测量是在使用MSCT创建的预先选择的人类头部三维图像的二维重建图像上完成的。测定29项线性头侧测量参数(LCP)和20项角侧测量参数(ACP)。男性和女性在鞍点和眶上点之间的距离以及棘下点和上唇点之间的距离上有统计学上的差异。通过在二维CT图像上测量得到的头侧测量参数的平均值可用于生成规范参数,这些参数代表用于生成人类颅骨三维PGMM的值。颅骨的PGMM可以在正畸、种植、口腔颌面外科中提供更准确的诊断、更好的治疗方法选择和更准确的愈合预后。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
ANALYSIS OF THE HUMAN CEPHALOMETRIC PARAMETERS IMPORTANT FOR DENTAL PRACTICE
Cephalometry is a measurement of the head by imaging, also taking into account the layer which consists of all the soft tissues of the head. Following the introduction of computed tomography (CT), 3D reconstruction of the head and neck structures and 3D analysis of angular and linear cephalometric parameters was enabled. This study aimed to determine the characteristic cephalometric parameters, using the 2D reconstruction of the multi-slice CT (MSCT) images, which are essential for computer designing of the parametric-geometric-mathematical model (PGMM) of the human skull. We conducted the study on 20 CT scans of adult patients (12 males and 8 females), taken from the radiology archive of the Clinical Center in Niš. Measurements were done on 2D reconstruction images of preselected 3D images of the human head created using MSCT. The values of 29 linear cephalometric parameters (LCP) and 20 angular cephalometric parameters (ACP) were determined. Statistically significant differences between males and females were noted for the distance between the points Sella and Supraorbitale and for the distance between the points Subspinale and Labium superius. Mean values of cephalometric parameters obtained by measurements on 2D CT images can be used to generate normative parameters which represent values used to generate 3D PGMM of the human skull. This PGMM of the skull may allow a more accurate diagnosis, better selection of treatment methods and more accurate prognosis for healing in orthodontics, implantology, oral and maxillofacial surgery.
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