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Fully automated detection of the counting area in blood smears for computer aided hematology

机译:充分自动检测计算机辅助血液学血液涂片中的计数区域

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For medical diagnosis, blood is an indispensable indicator for a wide variety of diseases, i.e. hemic, parasitic and sexually transmitted diseases. A robust detection and exact segmentation of white blood cells (leukocytes) in stained blood smears of the peripheral blood provides the base for a fully automated, image based preparation of the so called differential blood cell count in the context of medical laboratory diagnostics. Especially for the localization of the blood cells and in particular for the segmentation of the cells it is necessary to detect the working area of the blood smear. In this contribution we present an approach for locating the so called counting area on stained blood smears that is the region where cells are predominantly separated and do not interfere with each other. For this multiple images of a blood smear are taken and analyzed in order to select the image corresponding to this area. The analysis involves the computation of an unimodal function from image content that serves as indicator for the corresponding image. This requires a prior segmentation of the cells that is carried out by a binarization in the HSV color space. Finally, the indicator function is derived from the number of cells and the cells' surface area. Its unimodality guarantees to find a maximum value that corresponds to the counting areas image index. By this, a fast lookup of the counting area is performed enabling a fully automated analysis of blood smears for medical diagnosis. For an evaluation the algorithm's performance on a number of blood smears was compared with the ground truth information that has been defined by an adept hematologist.
机译:对于医学诊断,血液是各种疾病的不可或缺的指标,即Hemic,Parasitic和性传播疾病。在外周血的染色血液涂片中的白细胞(白细胞)的稳健检测和精确分割为您在医学实验室诊断的背景下的所谓差分血细胞计数的全自动,图像基础的碱。特别是对于血细胞的定位,特别是对于细胞的分割,需要检测血液涂片的工作区域。在这种贡献中,我们提出了一种方法,用于定位所谓的血液涂片上所谓的计数区域,该污迹是细胞主要分离的区域并且不会彼此干扰。对于这种血液涂抹的多个图像,并分析以便选择对应于该区域的图像。该分析涉及从作为相应图像的指示符的图像内容计算单向函数的计算。这需要通过HSV颜色空间中的二值化进行的细胞的先前分段。最后,指示符函数源自小区数和细胞表面积。它的单变性保证找到与计数区域图像索引相对应的最大值。由此,执行计数区域的快速查找,从而实现了对医学诊断的血液涂片的全自动分析。为了评估,将算法对许多血液涂片的性能与由Adept血液学家定义的地面真理信息进行比较。

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