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The Study of the Internal Mitochondrial Movement of the Cells by Data Mining with Prototype-Based Classification

机译:基于原型分类的数据挖掘技术研究细胞内部线粒体运动

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An expert is able to tell the system developer in many image-related tasks what a prototypical image should look like. Usually he will choose several prototypes for one class, but he cannot provide a good and large enough sample set for the class to train a classifier. Therefore, we mapped his technical procedure into a technical system based on proper theoretical methods that assist him in acquiring the knowledge about his application and furthermore in developing a classifier for his task. This system helps him to learn about the clusters and the borderlines of the clusters even when the data are very noisy as is the case for microscopic cell images in drug discovery where it is unclear if the drug will lead to the expected result on the cell parts. We describe in this paper the necessary functions that a prototype-based classifier should have. We also use the expert's estimated similarity as a new piece of knowledge and based on that we optimize the similarity. The test of the system was done on a new application on microscopic cell image analysis -- the study of the internal mitochondrial movement of cells. The aim was to discover the different dynamic signatures of mitochondrial movement. Three results of this movement were expected: tubular, round, and dead cell. Based on our results we can show the success of the developed method.
机译:专家能够在许多与图像相关的任务中告诉系统开发人员原型图像的外观。通常,他会为一个班级选择几个原型,但是他无法为班级提供足够好又足够大的样本集来训练分类器。因此,我们根据适当的理论方法将他的技术程序映射到一个技术系统中,以帮助他获得有关他的应用程序的知识,并进一步为他的任务开发分类器。即使数据非常嘈杂,该系统也可以帮助他了解簇和簇的边界,就像药物发现中的微观细胞图像一样,在这种情况下,不清楚药物是否会导致细胞部分产生预期结果。我们在本文中描述了基于原型的分类器应具有的必要功能。我们还将专家的估计相似度用作新知识,并在此基础上优化相似度。该系统的测试是在显微镜细胞图像分析的新应用上进行的-细胞内部线粒体运动的研究。目的是发现线粒体运动的不同动态特征。预期该运动的三个结果:肾小管,圆形和死细胞。根据我们的结果,我们可以证明所开发方法的成功。

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