Zacharia Eleni, Bondesson Maria, Riu Anne, Ducharme Nicole A, Gustafsson Jan-Åke, Kakadiaris Ioannis A
Computational Biomedicine Lab, Department of Computer Science, University of Houston, Houston, TX 77204-3010, USA.
Annu Int Conf IEEE Eng Med Biol Soc. 2011;2011:8082-5. doi: 10.1109/IEMBS.2011.6091993.
Biological inferences about the toxicity of chemicals reached during experiments on the zebrafish Dharma embryo can be greatly affected by the analysis of the time-lapse microscopy images depicting the embryo. Among the stages of image analysis, automatic and accurate segmentation of the Dharma embryo is the most crucial and challenging. In this paper, an accurate and automatic segmentation approach for the segmentation of the Dharma embryo data obtained by fluorescent time-lapse microscopy is proposed. Experiments performed in four stacks of 3D images over time have shown promising results.
在斑马鱼达摩胚胎实验中得出的关于化学物质毒性的生物学推断,会受到描绘胚胎的延时显微镜图像分析的极大影响。在图像分析的各个阶段中,达摩胚胎的自动且准确分割是最关键且最具挑战性的。本文提出了一种用于分割通过荧光延时显微镜获得的达摩胚胎数据的准确且自动的分割方法。在随时间变化的四组3D图像堆栈上进行的实验已显示出有前景的结果。