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A software to digital image processing to be used in the voxel phantom development.

机译:用于体素体模开发中的数字图像处理软件。

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Anthropomorphic models used in computational dosimetry, also denominated phantoms, are based on digital images recorded from scanning of real people by Computed Tomography (CT) or Magnetic Resonance Imaging (MRI). The voxel phantom construction requests computational processing for transformations of image formats, to compact two-dimensional (2-D) images forming of three-dimensional (3-D) matrices, image sampling and quantization, image enhancement, restoration and segmentation, among others. Hardly the researcher of computational dosimetry will find all these available abilities in single software, and almost always this difficulty presents as a result the decrease of the rhythm of his researches or the use, sometimes inadequate, of alternative tools. The need to integrate the several tasks mentioned above to obtain an image that can be used in an exposure computational model motivated the development of the Digital Image Processing (DIP) software, mainly to solve particular problems in Dissertations and Thesis developed by members of the Grupo de Pesquisa em Dosimetria Numerica (GDN/CNPq). Because of this particular objective, the software uses the Portuguese idiom in their implementations and interfaces. This paper presents the second version of the DIP, whose main changes are the more formal organization on menus and menu items, and menu for digital image segmentation. Currently, the DIP contains the menus Fundamentos, Visualizacoes, Dominio Espacial, Dominio de Frequencias, Segmentacoes and Estudos. Each menu contains items and sub-items with functionalities that, usually, request an image as input and produce an image or an attribute in the output. The DIP reads edits and writes binary files containing the 3-D matrix corresponding to a stack of axial images from a given geometry that can be a human body or other volume of interest. It also can read any type of computational image and to make conversions. When the task involves only an output image, this is saved as a JPEG file in the Windows defau when it involves an image stack, the output binary file is denominated SGI (Simulacoes Graficas Interativas (Interactive Graphic Simulations), an acronym already used in other publications of the GDN/CNPq.
机译:计算剂量学中使用的拟人化模型(也称为幻影)基于通过计算机断层扫描(CT)或磁共振成像(MRI)扫描真实人物而记录的数字图像。体素体模构造要求对图像格式进行转换的计算处理,以压缩三维(3-D)矩阵的二维(2-D)图像,图像采样和量化,图像增强,恢复和分割等。计算剂量学的研究人员几乎不可能在单个软件中找到所有这些可用的功能,并且由于研究节奏的降低或替代工具的使用(有时不充分),几乎总是会出现这种困难。集成上述提到的几个任务以获得可用于曝光计算模型的图像的需求推动了数字图像处理(DIP)软件的开发,主要是解决由Grupo成员开发的论文和论文中的特定问题de Pesquisa em Dosimetria Numerica(GDN / CNPq)。由于这一特定目标,该软件在其实现和界面中使用了葡萄牙语习惯用语。本文介绍了DIP的第二个版本,其主要更改是菜单和菜单项的更正式组织以及用于数字图像分割的菜单。当前,DIP包含菜单Fundamentos,Visualizacoes,Dominio Espacial,Dominio de Frequencias,Segmentacoes和Estudos。每个菜单包含具有功能的项目和子项目,这些功能通常要求将图像作为输入并在输出中产生图像或属性。 DIP读取编辑并写入包含3-D矩阵的二进制文件,该文件对应于来自给定几何形状(可能是人体或其他感兴趣体积)的一堆轴向图像。它还可以读取任何类型的计算图像并进行转换。如果任务仅涉及输出图像,则在Windows默认值中将其另存为JPEG文件。当涉及图像堆栈时,输出二进制文件称为SGI(Simulacoes Graficas Interativas(交互式图形仿真)),该缩写词已在GDN / CNPq的其他出版物中使用。

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