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Interactive and automated application of virtual microscopy

机译:虚拟显微镜的交互式自动化应用

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摘要

Virtual microscopy can be applied in an interactive and an automated manner. Interactive application is performed in close association to conventional microscopy. It includes image standardization suitable to the performance of an individual pathologist such as image colorization, white color balance, or individual adjusted brightness. The steering commands have to include selection of wanted magnification, easy navigation, notification, and simple measurements (distances, areas). The display of the histological image should be adjusted to the physical limits of the human eye, which are determined by a view angle of approximately 35 seconds. A more sophisticated performance should include acoustic commands that replace the corresponding visual commands. Automated virtual microscopy includes so-called microscopy assistants which can be defined similar to the developed assistants in computer based editing systems (Microsoft Word, etc.). These include an automated image standardization and correction algorithms that excludes images of poor quality (for example uni-colored or out-of-focus images), an automated selection of the most appropriate field of view, an automated selection of the best magnification, and finally proposals of the most probable diagnosis. A quality control of the final diagnosis, and feedback to the laboratory determine the proposed system. The already developed tools of such a system are described in detail, as well as the results of first trials. In order to enhance the speed of such a system, and to allow further user-independent development a distributed implementation probably based upon Grid technology seems to be appropriate. The advantages of such a system as well as the present pathology environment and its expectations will be discussed in detail.
机译:虚拟显微镜可以交互式和自动化的方式应用。交互式应用与常规显微镜密切相关。它包括适合于单个病理医生表现的图像标准化,例如图像着色,白色平衡或单独调整的亮度。转向命令必须包括所需放大倍率的选择,轻松导航,通知和简单测量(距离,面积)。组织学图像的显示应调整到人眼的物理极限,该极限由大约35秒的视角确定。更复杂的性能应包括取代相应视觉命令的声音命令。自动化的虚拟显微镜包括所谓的显微镜助手,其定义类似于在基于计算机的编辑系统(Microsoft Word等)中开发的助手。其中包括自动的图像标准化和校正算法,可排除质量较差的图像(例如单色或离焦图像),自动选择最合适的视野,自动选择最佳放大倍率以及最后提出最可能的诊断建议。最终诊断的质量控制以及对实验室的反馈决定了所提议的系统。详细描述了这种系统已经开发的工具,以及首次试用的结果。为了提高这种系统的速度,并允许进一步的用户独立开发,可能基于网格技术的分布式实现似乎是合适的。将详细讨论这种系统的优点以及当前的病理环境及其期望。

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