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首页> 外文期刊>The Journal of craniofacial surgery >Accuracy of craniofacial measurements: computed tomography and three-dimensional computed tomography compared with stereolithographic models.
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Accuracy of craniofacial measurements: computed tomography and three-dimensional computed tomography compared with stereolithographic models.

机译:颅面测量的准确性:与立体光刻模型相比,计算机断层扫描和三维计算机断层扫描。

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摘要

In a retrospective study, distance measurements of nine children with craniofacial malformation were analyzed. The accuracy of measurements was compared when measured on a workstation using a 16-slice multidetector spiral computed tomography and on a stereolithographic model. Three different methods of defining distances were investigated: 1) on the stereolithographic plastic models, 14 distances connecting landmarks were identified with a digitizer (Polaris Tracker); 2) the same distances were defined at axial, coronal, and sagittal reformats of the computed tomography data set and measured using a Philips MX View workstation; and 3) the same 14 distances were defined at three-dimensional virtual reality models of the skulls at the same workstation. All measurements were performed with all three methods by three different readers. The following conclusions could be drawn: stereolithographic models provide a highly exact reproduction of the skull in children with craniofacial malformations. They are a reliable basis for all analytic and probatory endeavors preparing complicated surgical corrections. Three-dimensional virtual reality display modes serve significantly better for exact distance measurements on the complex surface of the human skull than planar reformats of the same computed tomography data sets.
机译:在一项回顾性研究中,分析了9名颅面畸形患儿的距离测量结果。在工作站上使用16层多探测器螺旋计算机断层扫描和立体光刻模型进行测量时,比较了测量的准确性。研究了三种不同的距离定义方法:1)在立体光刻塑料模型上,使用数字化仪(Polaris Tracker)识别了14个连接地标的距离; 2)在计算机断层扫描数据集的轴向,冠状和矢状位格式处定义相同的距离,并使用Philips MX View工作站进行测量; 3)在同一工作站的头骨的三维虚拟现实模型中定义了相同的14个距离。由三个不同的读者使用全部三种方法执行所有测量。可以得出以下结论:立体光刻模型可以为颅面畸形患儿提供高度精确的颅骨复制。它们是所有准备复杂的手术矫正的分析和证明性工作的可靠基础。与相同的计算机断层扫描数据集的平面重新格式化相比,三维虚拟现实显示模式对于在人类头骨的复杂表面上进行精确距离测量而言,显着更好。

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