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Automatic leukocyte nucleus segmentation by intuitionistic fuzzy divergence based thresholding

机译:基于直觉模糊散度的阈值自动白细胞核分割

摘要

The paper proposes a robust approach to automatic segmentation of leukocyte‟s nucleus from microscopic blood smear images under normal as well as noisy environment by employing a new exponential intuitionistic fuzzy divergence based thresholding technique. The algorithm minimizes the divergence between the actual image and the ideally thresholded image to search for the final threshold. A new divergence formula based on exponential intuitionistic fuzzy entropy has been proposed. Further, to increase its noise handling capacity, a neighborhood-based membership function for the image pixels has been designed. The proposed scheme has been applied on 110 normal and 54 leukemia (chronic myelogenous leukemia) affected blood samples. The nucleus segmentation results have been validated by three expert haematologists. The algorithm achieves an average segmentation accuracy of 98.52% in noise-free environment. It beats the competitor algorithms in terms of several other metrics. The proposed scheme with neighborhood based membership function outperforms the competitor algorithms in terms of segmentation accuracy under noisy environment. It achieves 93.90% and 94.93% accuracies for Speckle and Gaussian noises respectively. The average area under the ROC curves comes out to be 0.9514 in noisy conditions, which proves the robustness of the proposed algorithm.
机译:本文提出了一种鲁棒的方法,可以通过使用基于指数直觉模糊散度的新阈值技术,在正常和嘈杂的环境下从显微血液涂片图像中自动分割白细胞核。该算法将实际图像与理想阈值图像之间的差异最小化,以搜索最终阈值。提出了一种基于指数直觉模糊熵的新发散公式。此外,为了增加其噪声处理能力,已经设计了用于图像像素的基于邻域的隶属度函数。拟议的方案已应用于110例正常和54例白血病(慢性粒细胞性白血病)受影响的血液样本。核分割的结果已经由三位血液专家鉴定。该算法在无噪声环境下的平均分割精度达到98.52%。在其他几个指标方面,它击败了竞争对手的算法。提出的基于邻域隶属度函数的方案在嘈杂环境下的分割精度方面优于竞争对手算法。它对斑点噪声和高斯噪声的准确度分别达到93.90%和94.93%。在嘈杂条件下,ROC曲线下的平均面积为0.9514,证明了该算法的鲁棒性。

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