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首页> 外文期刊>IEEE Transactions on Medical Imaging >Visible Korean Human: Improved serially sectioned images of the entire body
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Visible Korean Human: Improved serially sectioned images of the entire body

机译:可见的韩国人:改善了整个身体的连续切片图像

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摘要

The data from the Visible Human Project (VHP) and the Chinese Visible Human (CVH), which are the serially sectioned images of the entire cadaver, are being used to produce three-dimensional (3-D) images and software. The purpose of our research, the Visible Korean Human (VKH), is to produce an enhanced version of the serially sectioned images of an entire cadaver that can be used to upgrade the 3-D images and software. These improvements are achieved without drastically changing the methods developed for the VHP and CVH; thus, a complementary solution was found. A Korean male cadaver was chosen without anything perfused into the cadaver; the entire body was magnetic resonance (MR) and computed tomography (CT) scanned at 1.0-mm intervals to produce MR and CT images. After scanning, entire body of the cadaver was embedded and serially sectioned at 0.2-mm intervals; each sectioned surface was inputted into a personal computer to produce anatomical images (pixel size: 0.2 mm) without any missing images. Eleven anatomical organs in the anatomical images were segmented to produce segmented images. The anatomical and segmented images were stacked and reconstructed to produce 3-D images. The VKH is an ongoing research; we will produce a female version of the VKH and provide more detailed segmented images. The data from the VHP, CVH, and VKH will provide valuable resources to the medical image library of 3-D images and software in the field of medical education and clinical trials.
机译:来自可见人类项目(VHP)和中国可见人类(CVH)的数据,是整个尸体的连续切片图像,被用于生成三维(3-D)图像和软件。我们研究的目的是显示可见的朝鲜人(VKH),以生产整个尸体的序列切片图像的增强版本,该版本可用于升级3-D图像和软件。在不大幅改变为VHP和CVH开发的方法的情况下实现了这些改进。因此,找到了一种补充解决方案。选择了一名韩国男性尸体,尸体中没有任何东西。以1.0毫米的间隔对整个身体进行磁共振(MR)和计算机断层扫描(CT)扫描,以产生MR和CT图像。扫描后,将尸体的整个身体埋入并以0.2毫米的间隔连续切片;将每个切开的表面输入个人计算机以产生解剖图像(像素大小:0.2 mm),而不会丢失任何图像。解剖图像中的11个解剖器官产生分割图像。解剖和分割的图像被堆叠并重建以产生3D图像。 VKH是一项持续的研究;我们将制作女性版本的VKH,并提供更详细的分段图像。 VHP,CVH和VKH的数据将为医学教育和临床试验领域的3D图像医学图像库和软件提供有价值的资源。

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