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Mechanical modeling characterization of biological cells using microrobotics cell injection test bed

机译:使用微机器人细胞注射试验台对生物细胞进行机械建模表征

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Mechanical properties of biological cells play an important role in regulating cellular functions. Some micromanipulation methods have been reported in the literature to measure cell mechanics, but they are either high-costly or difficultly-operated. This paper presents our approach to use microrobotic cell injection technology as the test bed to characterize the mechanical properties of biological cells, by virtue of low cost and easy operation. By extending our previous work [41], we develop a mechanical model to interpret the mechanical responses during microinjection and extract the cells properties. Both finite element analysis and microinjection experiments are performed to verify the mechanical model. It is shown that the results obtained from the proposed mechanical model agree well with that obtained from finite element analysis and the experiments. Elastic moduli of zebrafish embryos at different developmental stages are characterized. This demonstrates not only the validity of the proposed model but also the fact that the microrobotic cell injection technology combining with the mechanical model can be used to characterize the mechanical properties of biological cells.
机译:生物细胞的机械性质在调节细胞功能中起重要作用。文献中已经报道了一些微操纵方法来测量细胞力学,但是它们要么成本高昂,要么难以操作。本文介绍了我们使用微机器人细胞注射技术作为测试床来表征生物细胞的机械特性的方法,该方法成本低廉且易于操作。通过扩展我们以前的工作[41],我们建立了一个机械模型来解释显微注射过程中的机械反应并提取细胞特性。进行了有限元分析和显微注射实验,以验证力学模型。结果表明,所提出的力学模型得到的结果与有限元分析和实验得到的结果吻合良好。斑马鱼胚胎在不同发育阶段的弹性模量。这不仅证明了所提出模型的有效性,而且证明了将微机器人细胞注射技术与机械模型相结合可用于表征生物细胞的机械特性的事实。

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