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Geometric separation of partially overlapping nonrigid objects applied to automatic chromosome classification

机译:部分重叠的非刚性对象的几何分离应用于自动染色体分类

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A common task in cytogenetic tests is the classification of human chromosomes. Successful separation between touching and overlapping chromosomes in a metaphase image is vital for correct classification. Current systems for automatic chromosome classification are mostly interactive and require human intervention for correct separation between touching and overlapping chromosomes. Since chromosomes are nonrigid objects, special separation methods are required to segregate them. Common methods for overlapping chromosomes separation between touching chromosomes tend to fail where ambiguity or incomplete information are involved, and so are unable to segregate overlapping chromosomes. The proposed approach treats the separation problem as an identification problem, and, in this way, manages to segregate overlapping chromosomes. This approach encompasses low-level knowledge about the objects and uses only extracted information, therefore, it is fast and does not depend on the existence of a separating path. The method described in this paper can be adopted for other applications, where separation between touching and overlapping nonrigid objects is required.
机译:细胞遗传学测试中的一项常见任务是对人类染色体进行分类。中期图像中接触和重叠染色体之间的成功分离对于正确分类至关重要。当前用于自动染色体分类的系统大多数是交互式的,并且需要人工干预才能在接触和重叠的染色体之间正确分离。由于染色体是非刚性对象,因此需要特殊的分离方法来分离它们。在涉及歧义或不完整信息的情况下,接触染色体之间的重叠染色体分离的常用方法往往会失败,因此无法分离重叠的染色体。提出的方法将分离问题视为识别问题,并以此方式设法分离重叠的染色体。该方法包含有关对象的低级知识,并且仅使用提取的信息,因此,它快速且不依赖于分离路径的存在。本文所述的方法可用于其他需要将触摸的和重叠的非刚性物体分开的应用。

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