[Study of automatic cephalometric analysis by digital image processing].

I Maizumi
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Abstract

In the lateral roentgenographic cephalometric analysis, a certain degree of errors is unavoidable as it involves a lot of manual work in tracing, landmark setting, measurement and registration. To minimize the chances of errors creeping in, efforts have been made toward the mechanization of manual work. For measuring and registering automatically, a roentgenographic cephalometric system using a personal computer is available. Attempts have also been made to automatically obtain landmarks on tracings by the use of a computer. However, tracing still has to be performed by hand. The circumstances are such that the development of a full-scale scanning system that can perform automatic tracing on cephalometric radiographs in being eagerly awaited. The present study concerns the possibility of using a small-size computer mainframe in a small-scale clinical laboratory which cannot afford to install a large one. A digital image processing system using a personal computer was devised to process cephalograms. And a the anatomical complex on the screen was developed. To examine the acuracy of the drawings, comparisons were made between manual tracings and computer-aided tracings. The results were as follows: 1. In both vertical and horizontal components at Pog, Gn and Me points, computer tracings were matched significantly well with manual tracings. 2. At the points of Or, ANS, A and Go, only vertical components were matched significantly well with those obtained by manual tracing. 3. In the program developed for the present study, the computer had a greater tendency than man to draw the borderline along the higher density area when the gray level gradient was not sharp.

基于数字图像处理的头颅自动测量分析研究
在侧位x线体位测量分析中,由于涉及到大量的人工跟踪、地标设置、测量和配准,因此不可避免地会出现一定程度的误差。为了尽量减少出现错误的可能性,人们努力使手工工作机械化。为了自动测量和记录,可以使用个人计算机的x线头测量系统。人们还尝试使用计算机自动获取轨迹上的地标。然而,跟踪仍然必须手工执行。在这种情况下,开发一种能够对头颅x线片进行自动追踪的全尺寸扫描系统是迫切需要的。目前的研究涉及在没有能力安装大型计算机的小型临床实验室中使用小型计算机主机的可能性。设计了一种使用个人计算机的数字图像处理系统来处理脑电图。然后屏幕上的解剖复合体就形成了。为了检验图纸的准确性,对手工描摹和计算机辅助描摹进行了比较。实验结果如下:1.实验结果表明:在Pog、Gn和Me点的垂直和水平分量上,计算机示踪与人工示踪匹配显著。2. 在Or、ANS、A和Go点,只有垂直分量与人工追踪得到的分量匹配较好。3.在为本研究开发的程序中,当灰度梯度不明显时,计算机比人更倾向于沿着高密度区域绘制边界。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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