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Active Contour Segmentation based on Approximate Entropy Application to Cell Membrane Segmentation in Confocal Microscopy

机译:基于近似熵应用于共聚焦显微镜中细胞膜分割的主动轮廓分割

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Segmentation of cellular structures is of primary interest in cell imaging for cell shape reconstruction and to provide crucial information about possible cell morphology changes during radiotherapy for instance. From the particular perspective of predictive oncology, this paper reports on a novel method for membrane segmentation from single channel actin tagged fluorescence confocal microscopy images, which remains a challenging task. Proposed method is based on the use of the Approximate Entropy formerly introduced by Pincus embedded within a Geodesic Active Contour approach. Approximate Entropy can be seen as an estimator of the regularity of a particular sequence of values and, consequently, can be used as an edge detector. In this prospective study, a preliminary study on Approximate Entropy as an edge detector function is first proposed with a particular focus on the robustness to noise, and some promising membrane segmentation results obtained on confocal microscopy images are also shown.
机译:细胞结构的分割对细胞形状重建的细胞成像进行了初步兴趣,并且在例如放射治疗期间提供关于可能的细胞形态变化的重要信息。从预测性肿瘤的特定角度来看,本文报告了一种来自单通道肌动蛋白标记的荧光共聚焦显微镜图像的膜分割的新方法,这仍然是一个具有挑战性的任务。所提出的方法基于使用以前由嵌入在测地有源轮廓方法内的穴位引入的近似熵。近似熵可以被视为特定值序列的规律性的估计器,因此可以用作边缘检测器。在该前瞻性研究中,首先提出了作为边缘检测器功能的近似熵的初步研究,特别是对噪声的鲁棒性特别聚焦,并且还示出了在共聚焦显微镜图像上获得的一些有前途的膜分段结果。

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