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首页> 外文期刊>The Journal of craniofacial surgery >Systematized methods of surface reconstruction from the serial sectioned images of a cadaver head
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Systematized methods of surface reconstruction from the serial sectioned images of a cadaver head

机译:从尸体头部的连续切片图像中重建表面的系统化方法

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摘要

Three-dimensional models have played important roles in medical simulation and education. Surface models can be manipulated in real time and even online; surface models have significant features for an interactive simulation system. The objective surface models are obtainable from accumulation of each structure's outlines, followed by surface reconstruction. The aim of this research was to suggest the arranged methods of surface reconstruction, which might be applied to building surface models from serial images, such as computed tomographic scans and magnetic resonance images. We used recent state-of-the-art sectioned images of a cadaver head in which several structures were delineated. Four reconstruction methods were regulated according to the structure's morphology: all outlines of a structure are overlapped and singular (method 1), overlapped and not singular (method 2), not overlapped but singular (method 3), and neither overlapped nor singular (method 4). From the trials with various kinds of head structures, we strongly suggested methods 1 and 2, in which volume reconstruction before surface reconstruction accelerated the processing speed on 3D-DOCTOR. So as to use methods 1 and 2, how to make the neighboring outlines overlapped in advance was discussed. The surface models of detailed head structures prepared in this investigation will hopefully contribute to various simulations for clinical practice. The value of the surface models are enhanced if they are placed over the original sectioned images, outlined images, and magnetic resonance images of the same cadaver.
机译:三维模型在医学模拟和教育中发挥了重要作用。表面模型可以实时甚至在线进行操作;曲面模型对于交互式仿真系统具有重要功能。通过累积每个结构的轮廓,然后进行表面重建,可以获得客观的表面模型。这项研究的目的是提出一种表面重建的安排方法,该方法可以应用于通过串行图像(例如计算机断层扫描和磁共振图像)构建表面模型。我们使用了尸体头部的最新技术剖面图像,其中描绘了几种结构。根据结构的形态调节了四种重建方法:结构的所有轮廓都重叠且是奇异的(方法1),重叠且不是奇异的(方法2),不是重叠而是奇异的(方法3),既不是重叠也不是奇异的(方法) 4)。从各种头部结构的试验中,我们强烈建议方法1和2,其中在表面重建之前进行体积重建可加快3D-DOCTOR的处理速度。为了使用方法1和2,讨论了如何使相邻轮廓预先重叠。这项研究准备的详细头部结构的表面模型有望为临床实践中的各种模拟做出贡献。如果将表面模型放置在同一尸体的原始截面图像,轮廓图像和磁共振图像上,则可以提高表面模型的价值。

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