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1.
Comput Biol Med ; 153: 106499, 2023 02.
Article in English | MEDLINE | ID: mdl-36599208

ABSTRACT

The automated segmentation and tracking of macrophages during their migration are challenging tasks due to their dynamically changing shapes and motions. This paper proposes a new algorithm to achieve automatic cell tracking in time-lapse microscopy macrophage data. First, we design a segmentation method employing space-time filtering, local Otsu's thresholding, and the SUBSURF (subjective surface segmentation) method. Next, the partial trajectories for cells overlapping in the temporal direction are extracted in the segmented images. Finally, the extracted trajectories are linked by considering their direction of movement. The segmented images and the obtained trajectories from the proposed method are compared with those of the semi-automatic segmentation and manual tracking. The proposed tracking achieved 97.4% of accuracy for macrophage data under challenging situations, feeble fluorescent intensity, irregular shapes, and motion of macrophages. We expect that the automatically extracted trajectories of macrophages can provide pieces of evidence of how macrophages migrate depending on their polarization modes in the situation, such as during wound healing.


Subject(s)
Microscopy , Motion Pictures , Animals , Algorithms , Cell Tracking , Image Processing, Computer-Assisted/methods
2.
Article in English | MEDLINE | ID: mdl-18003450

ABSTRACT

We discuss application of nonlinear PDE based methods to filtering of 3-D confocal images of embryogenesis. We focus on the mean curvature driven and the regularized Perona-Malik equations, where standard as well as newly suggested edge detectors are used. After presenting the related mathematical models, the practical results are given and discussed by visual inspection and quantitatively using the mean Hausdorff distance.


Subject(s)
Embryo, Nonmammalian/cytology , Image Interpretation, Computer-Assisted/methods , Imaging, Three-Dimensional/methods , Microscopy, Confocal/methods , Pattern Recognition, Automated/methods , Signal Processing, Computer-Assisted , Zebrafish/anatomy & histology , Zebrafish/embryology , Algorithms , Animals , Artificial Intelligence , Computer Simulation , Humans , Image Enhancement/methods , Models, Biological , Reproducibility of Results , Sensitivity and Specificity
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