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使用流行软件从可视韩国人构建的男性泌尿生殖器官的表面模型。

Surface models of the male urogenital organs built from the Visible Korean using popular software.

作者信息

Shin Dong Sun, Park Jin Seo, Shin Byeong-Seok, Chung Min Suk

机构信息

Department of Anatomy, School of Medicine, Ajou University, Suwon, Korea.

出版信息

Anat Cell Biol. 2011 Jun;44(2):151-9. doi: 10.5115/acb.2011.44.2.151. Epub 2011 Jun 30.

Abstract

Unlike volume models, surface models, which are empty three-dimensional images, have a small file size, so they can be displayed, rotated, and modified in real time. Thus, surface models of male urogenital organs can be effectively applied to an interactive computer simulation and contribute to the clinical practice of urologists. To create high-quality surface models, the urogenital organs and other neighboring structures were outlined in 464 sectioned images of the Visible Korean male using Adobe Photoshop; the outlines were interpolated on Discreet Combustion; then an almost automatic volume reconstruction followed by surface reconstruction was performed on 3D-DOCTOR. The surface models were refined and assembled in their proper positions on Maya, and a surface model was coated with actual surface texture acquired from the volume model of the structure on specially programmed software. In total, 95 surface models were prepared, particularly complete models of the urinary and genital tracts. These surface models will be distributed to encourage other investigators to develop various kinds of medical training simulations. Increasingly automated surface reconstruction technology using commercial software will enable other researchers to produce their own surface models more effectively.

摘要

与体模型不同,表面模型是中空的三维图像,文件大小较小,因此可以实时显示、旋转和修改。因此,男性泌尿生殖器官的表面模型可以有效地应用于交互式计算机模拟,并有助于泌尿外科医生的临床实践。为了创建高质量的表面模型,使用Adobe Photoshop在464张韩国可见男性的切片图像中勾勒出泌尿生殖器官和其他相邻结构;轮廓在Discreet Combustion上进行插值;然后在3D-DOCTOR上进行几乎自动的体素重建,随后进行表面重建。表面模型在Maya上进行细化并组装到合适的位置,并在专门编程的软件上用从该结构的体模型获取的实际表面纹理对表面模型进行涂层处理。总共制备了95个表面模型,特别是泌尿生殖道的完整模型。这些表面模型将被分发,以鼓励其他研究人员开发各种医学训练模拟。使用商业软件的日益自动化的表面重建技术将使其他研究人员能够更有效地制作自己的表面模型。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/f137/3145844/d9124578c33d/acb-44-151-g001.jpg

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