| Literature DB >> 22894459 |
Jing-gao Zheng1, Danyu Lu, Tianyuan Chen, Chengming Wang, Ning Tian, Fengying Zhao, Tiancheng Huo, Ning Zhang, Dieyan Chen, Wanyun Ma, Jia-lin Sun, Ping Xue.
Abstract
Early patterning and polarity is of fundamental interest in preimplantation embryonic development. Label-free subcellular 3D live imaging is very helpful to its related studies. We have developed a novel system of full-field optical coherence tomography (FF-OCT) for noninvasive 3D subcellular live imaging of preimplantation mouse embryos with no need of dye labeling. 3D digitized embryos can be obtained by image processing. Label-free 3D live imaging is demonstrated for the mouse embryos at various typical preimplantation stages with a spatial resolution of 0.7 [micro sign]m and imaging rate of 24 fps. Factors that relate to early patterning and polarity, such as pronuclei in zygote, shapes of zona pellucida, location of second polar body, cleavage planes, and the blastocyst axis, can be quantitatively measured. The angle between the two second cleavage planes is accurately measured to be 87 deg. It is shown that FF-OCT provides a potential breakthrough for early patterning, polarity formation, and many other preimplantation-related studies in mammalian developmental biology.Entities:
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Year: 2012 PMID: 22894459 DOI: 10.1117/1.JBO.17.7.070503
Source DB: PubMed Journal: J Biomed Opt ISSN: 1083-3668 Impact factor: 3.170