论文标题

基于膜理论的细胞生物力学建模,并考虑了显微注射的速度效应

Cell Biomechanical Modeling Based on Membrane Theory with Considering Speed Effect of Microinjection

论文作者

Kang, Shengzheng, Song, Zhicheng, Yang, Xiaolong, Li, Yao, Wu, Hongtao, Li, Tao

论文摘要

作为将外部材料输送到生物细胞中的有效方法,显微注射已被广泛应用于生物医学领域。但是,对细胞机械性能的认知仍然不足,这极大地限制了注入的效率和成功率。因此,首次提出了基于膜理论的新速率依赖机械模型。在此模型中,通过考虑微注射的速度效应,建立了注射力和细胞变形之间的分析平衡方程。与传统的基于膜理论的模型不同,拟议模型中本构材料的弹性系数被修改为注入速度和加速度的函数,有效地模拟了速度对机械响应的影响并提供了更概括和实用的模型。使用此模型,还可以准确预测以不同速度的其他机械响应,包括膜张力和应力的分布以及变形的形状。为了验证模型的有效性,进行了数值模拟和实验。结果表明,所提出的模型可以在不同的注射速度下很好地匹配真实的机械响应。

As an effective method to deliver external materials into biological cells, microinjection has been widely applied in the biomedical field. However, the cognition of cell mechanical property is still inadequate, which greatly limits the efficiency and success rate of injection. Thus, a new rate-dependent mechanical model based on membrane theory is proposed for the first time. In this model, an analytical equilibrium equation between the injection force and cell deformation is established by considering the speed effect of microinjection. Different from the traditional membrane-theory-based model, the elastic coefficient of the constitutive material in the proposed model is modified as a function of the injection velocity and acceleration, effectively simulating the influence of speeds on the mechanical responses and providing a more generalized and practical model. Using this model, other mechanical responses at different speeds can be also accurately predicted, including the distribution of membrane tension and stress and the deformed shape. To verify the validity of the model, numerical simulations and experiments are carried out. The results show that the proposed model can match the real mechanical responses well at different injection speeds.

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