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Embryonic Heart Morphogenesis from Confocal Microscopy Imaging and Automatic Segmentation

机译:共聚焦显微镜成像和自动分割的胚胎心脏形态发生

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Embryonic heart morphogenesis (EHM) is a complex and dynamic process where the heart transforms from a single tube into a four-chambered pump. This process is of great biological and clinical interest but is still poorly understood for two main reasons. On the one hand, the existing imaging modalities for investigating EHM suffered from either limited penetration depth or limited spatial resolution. On the other hand, current works typically adopted manual segmentation, which was tedious, subjective, and time consuming considering the complexity of developing heart geometry and the large size of images. In this paper, we propose to utilize confocal microscopy imaging with tissue optical immersion clearing technique to image the heart at different stages of development for EHM study. The imaging method is able to produce high spatial resolution images and achieve large penetration depth at the same time. Furthermore, we propose a novel convex active contour model for automatic image segmentation. The model has the ability to deal with intensity fall-off in depth which is characterized by confocal microscopy images. We acquired the images of embryonic quail hearts from day 6 to day 14 of incubation for EHM study. The experimental results were promising and provided us with an insight view of early heart growth pattern and also paved the road for data-driven heart growth modeling.
机译:胚胎心脏形态发生(EHM)是一种复杂的和动态过程,其中心脏从单管转换成四腔泵。这种过程具有很大的生物和临床兴趣,但仍然是仍然不知所措的两种主要原因。一方面,用于研究EHM的现有成像方式遭受有限的渗透深度或限量空间分辨率。另一方面,目前的作品通常采用了手动分割,考虑到发育心脏几何形状和大尺寸图像的复杂性,这是繁琐的,主观和耗时的繁琐。在本文中,我们建议利用与组织光学浸没清除技术的共聚焦显微镜成像,以EHM研究的不同发展阶段的形象形象。成像方法能够产生高空间分辨率图像并同时实现大的穿透深度。此外,我们提出了一种用于自动图像分割的新型凸起活动轮廓模型。该模型能够处理深度的强度掉落,其特征在于共聚焦显微镜图像。我们从第6天到第14天的孵育孵育时获得了胚胎鹌鹑心的图像。实验结果是有前途的,并为我们提供了早期心脏增长模式的见解观点,并为数据驱动的心脏生长建模铺平了道路。

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