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Adaptive Thresholding Image Series from Fluorescence Confocal Scanning Laser Microscope via Orientation Intensity Profiles

机译:荧光共焦扫描激光显微镜通过方向强度轮廓的自适应阈值图像系列

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Many grey-level thresholding methods based on histogram or other statistic information about the interest image such as maximum entropy and so on have been proposed in the past. However, most methods based on statistic analysis of the images concerned little about the characteristics of morphology of interest objects, which sometimes could provide very important indication which can help to find the optimum threshold, especially for those organisms which have special texture morphologies such as vasculature, neuro-network etc. in medical imaging. In this paper, we propose a novel method for thresholding the fluorescent vasculature image series recorded from Confocal Scanning Laser Microscope. After extracting the basic orientation of the slice of vessels inside a sub-region partitioned from the images, we analysis the intensity profiles perpendicular to the vessel orientation to get the reasonable initial threshold for each region. Then the threshold values of those regions near the interest one both in x-y and optical directions have been referenced to get the final result of thresholds of the region, which makes the whole stack of images look more continuous. The resulting images are characterized by suppressing both noise and non-interest tissues conglutinated to vessels, while improving the vessel connectivities and edge definitions. The value of the method for idealized thresholding the fluorescence images of biological objects is demonstrated by a comparison of the results of 3D vascular reconstruction.
机译:过去已经提出了许多基于直方图或有关感兴趣图像的其他统计信息(例如最大熵)的灰度阈值化方法。但是,大多数基于图像统计分析的方法很少关注目标对象的形态特征,有时这些方法可以提供非常重要的指示,可以帮助找到最佳阈值,特别是对于那些具有特殊纹理形态的生物(例如脉管系统) ,神经网络等在医学成像中的应用。在本文中,我们提出了一种用于对从共聚焦扫描激光显微镜记录的荧光脉管系统图像序列进行阈值处理的新方法。在提取从图像划分的子区域内的血管切片的基本方向后,我们分析了垂直于血管方向的强度分布,以获得每个区域的合理初始阈值。然后参考了在x-y和光学方向上都靠近感兴趣区域的那些区域的阈值,以获得该区域阈值的最终结果,这使整个图像堆栈看起来更加连续。所得图像的特征在于,抑制了噪声和粘在血管上的非感兴趣组织,同时改善了血管的连通性和边缘清晰度。通过对3D血管重建结果进行比较,证明了理想化阈值化生物对象荧光图像的方法的价值。

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