Zeng Weijun, Zhao Zhenying, Yang Yuchen, Zhou Minchao, Wang Bidou, Sun Haixuan
University of Science and Technology of China, Hefei 230022, P.R.China.
Suzhou Institute of Biomedical Engineering and Technology, Chinese Academy of Sciences, Suzhou, Jiangsu 215163, P.R.China.
Sheng Wu Yi Xue Gong Cheng Xue Za Zhi. 2021 Dec 25;38(6):1134-1143. doi: 10.7507/1001-5515.202107053.
In the study of embryo development process, the morphological features at different stages are essential to evaluate developmental competence of the embryo, which can be used to optimize and improve the system for embryo culture. In this paper, an online monitoring system was designed for long-term culture of embryos, based on a monitoring strategy of low-magnification search and high-magnification observation. Three optical modules of 4× phase contrast, 10× and 20× Hoffman modulation phase contrast were configured in this system to meet the requirements of different fields of view, especially when the size of the embryo increases during the culture. Using an optomechanical system matching design, an error control and alignment test, the resolution of optical imaging was guaranteed, and a relief stereoscopic imaging with high contrast of embryos was obtained. Through low-magnification field of view to identify and locate embryos and high-magnification field of view to capture the details, the system realized online tracking and monitoring of embryos. In addition, we developed and verified an embryo identifying and locating algorithm based on image contour area and definition evaluation. The online monitoring system of embryo culture proposed in this paper can track and record the morphological features of embryos without affecting the embryo development, providing a basis for the assessment of embryo development and the optimization of culture system.
在胚胎发育过程的研究中,不同阶段的形态特征对于评估胚胎的发育能力至关重要,可用于优化和改进胚胎培养体系。本文基于低倍搜索和高倍观察的监测策略,设计了一种用于胚胎长期培养的在线监测系统。该系统配置了4×相差、10×和20×霍夫曼调制相差三个光学模块,以满足不同视野的需求,特别是在培养过程中胚胎尺寸增大时。通过光学机械系统匹配设计、误差控制和对准测试,保证了光学成像的分辨率,并获得了胚胎高对比度的浮雕立体成像。该系统通过低倍视野识别和定位胚胎,高倍视野捕捉细节,实现了对胚胎的在线跟踪和监测。此外,我们开发并验证了一种基于图像轮廓面积和清晰度评估的胚胎识别与定位算法。本文提出的胚胎培养在线监测系统能够在不影响胚胎发育的情况下跟踪和记录胚胎的形态特征,为胚胎发育评估和培养体系优化提供依据。