首页> 外文期刊>Clinical anatomy: official journal of the American Association of Clinical Anatomists & the British Association of Clinical Anatomists >An interactive three-dimensional virtual body structures system for anatomical training over the internet.
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An interactive three-dimensional virtual body structures system for anatomical training over the internet.

机译:用于在互联网上进行解剖学训练的交互式三维虚拟人体结构系统。

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摘要

The Visible Human digital datasets make it possible to develop computer-based anatomical training systems that use virtual anatomical models (virtual body structures-VBS). Medical schools are combining these virtual training systems and classical anatomy teaching methods that use labeled images and cadaver dissection. In this paper we present a customizable web-based three-dimensional anatomy training system, W3D-VBS. W3D-VBS uses National Library of Medicine's (NLM) Visible Human Male datasets to interactively locate, explore, select, extract, highlight, label, and visualize, realistic 2D (using axial, coronal, and sagittal views) and 3D virtual structures. A real-time self-guided virtual tour of the entire body is designed to provide detailed anatomical information about structures, substructures, and proximal structures. The system thus facilitates learning of visuospatial relationships at a level of detail that may not be possible by any other means. The use of volumetric structures allows for repeated real-time virtual dissections, from any angle, at the convenience of the user. Volumetric (3D) virtual dissections are performed by adding, removing, highlighting, and labeling individual structures (and/or entire anatomical systems). The resultant virtual explorations (consisting of anatomical 2D/3D illustrations and animations), with user selected highlighting colors and label positions, can be saved and used for generating lesson plans and evaluation systems. Tracking users' progress using the evaluation system helps customize the curriculum, making W3D-VBS a powerful learning tool. Our plan is to incorporate other Visible Human segmented datasets, especially datasets with higher resolutions, that make it possible to include finer anatomical structures such as nerves and small vessels.
机译:可见人类数字数据集使开发基于计算机的解剖训练系统成为可能,该系统使用虚拟解剖模型(虚拟人体结构-VBS)。医学院将这些虚拟培训系统与使用标记图像和尸体解剖的经典解剖学教学方法结合在一起。在本文中,我们提出了一个可定制的基于Web的三维解剖结构训练系统W3D-VBS。 W3D-VBS使用国家医学图书馆(NLM)的可见人类男性数据集来交互式地定位,探索,选择,提取,突出显示,标记和可视化逼真的2D(使用轴向,冠状和矢状面)和3D虚拟结构。整个身体的实时自我引导虚拟漫游旨在提供有关结构,子结构和近端结构的详细解剖信息。因此,该系统有助于以任何其他手段不可能实现的细节水平来学习视觉空间关系。体积结构的使用允许用户方便地从任何角度重复进行实时虚拟解剖。体积(3D)虚拟解剖是通过添加,删除,突出显示和标记单个结构(和/或整个解剖系统)来执行的。通过用户选择的突出显示颜色和标签位置,可以保存最终的虚拟探索(由解剖2D / 3D插图和动画组成),并可以用于生成课程计划和评估系统。使用评估系统跟踪用户的进度有助于定制课程表,从而使W3D-VBS成为功能强大的学习工具。我们的计划是合并其他可见的人类分段数据集,尤其是具有更高分辨率的数据集,从而可以包括神经和小血管等更精细的解剖结构。

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