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Three-dimensional visualization system as an aid for lung cancer detection

机译:三维可视化系统可帮助检测肺癌

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Abstract: The purpose of this work was to create a 3D visualization system to aid physicians in observing abnormalities of the human lungs. A series of 20-30 helical CT lung slice images obtained from the lung cancer screening protocol as well as a series of 100-150 diagnostic helical CT lung slice images were used as an input. We designed a segmentation filter to enhance the lung boundaries and filter out small and medium bronchi from the original images. The pairs of original and filtered images were further processed with the contour extraction method to segment out only the lung field for further study. In the next step the segmented lung images containing the small bronchi and lung textures were used to generate the volumetric dataset input for the 3D visualization system. Additional processing for the extracted contour was used to smooth the 3D lung contour in the lung boundaries. The computer program developed allows, among others, viewing of the 3D lung object from various angles, zooming in and out as well as selecting the regions of interest for further viewing. The density and gradient opacity tables are defined and used to manipulate the displayed contents of 3D rendered images. Thus, an effective 'see-through' technique is applied to the 3D lung object for better visual access to the internal lung structures like bronchi and possible cancer masses. These and other features of the resulting 3D lung visualization system give the user a powerful tool to observe and investigate the patient's lungs. The filter designed for this study is a completely new solution that greatly facilitates the boundary detection. The developed 3D visualization system dedicated from chest CT provides the user a new way to explore effective diagnosis of potential lung abnormalities and cancer. In the authors' opinion, the developed system can be successfully used to view and analyze patient's lung CT images in a new powerful approach in both diagnosis and surgery-planning applications. Additionally, we see the possibility of using the system for teaching anatomy as well as pathology of the human lung. !116
机译:摘要:这项工作的目的是创建一个3D可视化系统,以帮助医生观察人的肺部异常情况。从肺癌筛查方案获得的一系列20-30个螺旋CT肺切片图像以及一系列100-150个诊断性螺旋CT肺切片图像用作输入。我们设计了一个分割滤镜以增强肺部边界,并从原始图像中滤除中小支气管。使用轮廓提取方法进一步处理成对的原始图像和滤波后的图像,以仅分割出肺野以进行进一步研究。在下一步中,将包含小支气管和肺纹理的分割后的肺部图像用于生成3D可视化系统的体积数据集输入。提取轮廓的其他处理用于平滑肺边界中的3D肺轮廓。开发的计算机程序尤其允许从各种角度查看3D肺对象,放大和缩小以及选择感兴趣的区域以进​​行进一步查看。定义了密度和渐变不透明度表,并将其用于处理3D渲染图像的显示内容。因此,将有效的“透视”技术应用于3D肺对象,以便更好地视觉访问内部的肺结构,例如支气管和可能的癌块。所得3D肺部可视化系统的这些和其他功能为用户提供了观察和研究患者肺部的强大工具。为这项研究设计的滤波器是一种全新的解决方案,极大地方便了边界检测。胸部CT专用的已开发3D可视化系统为用户提供了一种探索有效诊断潜在肺部异常和癌症的新方法。作者认为,开发的系统可以在诊断和手术计划应用中以一种新的强大方法成功用于查看和分析患者的肺部CT图像。此外,我们看到了使用该系统教授人体肺部解剖学和病理学的可能性。 !116

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