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Blastocyst Microinjection Automation

机译:囊胚显微注射自动化

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摘要

Blastocyst microinjections are routinely involved in the process of creating genetically modified mice for biomedical research, but their efficiency is highly dependent on the skills of the operators. As a consequence, much time and resources are required for training microinjection personnel. This situation has been aggravated by the rapid growth of genetic research, which has increased the demand for mutant animals. Therefore, increased productivity and efficiency in this area are highly desired. Here, we pursue these goals through the automation of a previously developed teleoperated blastocyst microinjection system. This included the design of a new system setup to facilitate automation, the definition of rules for automatic microinjections, the implementation of video processing algorithms to extract feedback information from microscope images, and the creation of control algorithms for process automation. Experimentation conducted with this new system and operator assistance during the cells delivery phase demonstrated a 75$%$ microinjection success rate. In addition, implantation of the successfully injected blastocysts resulted in a 53$%$ birth rate and a 20$%$ yield of chimeras. These results proved that the developed system was capable of automatic blastocyst penetration and retraction, demonstrating the success of major steps toward full process automation.
机译:胚泡显微注射通常参与创建用于生物医学研究的转基因小鼠的过程,但是它们的效率高度依赖于操作员的技能。结果,需要大量时间和资源来训练显微注射人员。基因研究的迅速发展加剧了这种情况,这增加了对突变动物的需求。因此,非常需要在该领域中提高生产率和效率。在这里,我们通过以前开发的遥控胚泡显微注射系统的自动化实现这些目标。这包括新系统设置的设计,以促进自动化,自动显微注射规则的定义,视频处理算法的实现,以从显微镜图像中提取反馈信息,以及创建过程自动化的控制算法。使用这种新系统进行的实验和操作员的协助在细胞递送阶段证明了显微注射成功率为75%。另外,成功注射的胚泡的植入导致出生率达到53 %%,嵌合体产量达到20 %%。这些结果证明,开发的系统能够自动穿透和收回胚泡,证明了朝着全过程自动化迈出的主要步骤的成功。

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