四维共聚焦图像中迁移神经元的自动跟踪和分割工具

M. Karakaya, R. Kerekes, D. Solecki
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引用次数: 0

摘要

在许多神经生物学研究中,准确追踪和分割共聚焦图像序列中迁移神经元的亚细胞成分是了解发育神经元运动背后的生物机制的先决步骤。在本文中,我们提出了一个自动跟踪,跟踪和分割工具,用于共聚焦荧光显微镜获得的延时图像堆栈中迁移神经元的soma, leading和trailing过程。在我们的方法中,我们首先在第一帧的最大强度投影中定位每个神经元,使用手动标记体细胞和领先和落后过程的终点。通过在第一帧使用每个体的位置,我们自动跟踪其余帧中的体。然后,利用快速推进算法,在每一帧中从soma中心到标记的末端末端跟踪前导和尾随过程。最后,以体细胞中心和轨迹为种子点,对每个神经元的体细胞、前导和后导过程进行分割,并将它们的边界分开。基于定性结果,我们展示了在最小用户输入的情况下自动跟踪,跟踪和分割迁移神经元的soma, leading和trailing过程的能力。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Automated tracing and segmentation tool for migrating neurons in 4D confocal imagery
Accurate tracing and segmentation of subcellular components of migrating neurons in confocal image sequences are prerequisite steps in many neurobiology studies to understand the biological machinery behind the movement of developing neurons. In this paper, we present an automated tracking, tracing, and segmentation tool for soma, leading, and trailing process of migrating neurons in time-lapse image stacks acquired with a confocal fluorescence microscope. In our approach, we first localize each neuron in the maximum intensity projection of the first frame using manual labeling of the soma and end points of the leading and trailing process. By using each soma position at the first frame, we automatically track the somas in rest of the frames. Then, leading and trailing process are traced in each frame from the soma center to the labeled end tip of the process by using fast marching algorithm. Finally, the soma, leading and trailing processes of each neuron are segmented by using the soma center and traces as seed points, and their boundaries are separated from each other. Based on qualitative results, we demonstrate the capability to automatically track, trace, and segment the soma, leading, and trailing processes of a migrating neuron with minimal user input.
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