College of Materials Science and Engineering, Sichuan University, Chengdu 610065, China.
J Healthc Eng. 2017;2017:1587670. doi: 10.1155/2017/1587670. Epub 2017 Jun 18.
Cell tensile technique is an important and widely used tool in cell mechanical research. However, the strain control condition in traditional tensile experiments is not satisfied and would result in big errors. These strain errors will seriously impact the experimental accuracy and decrease the reliability and comparability of experimental results. In order to achieve the accurate strain control of the membrane during stretching, a strain feedback compensation method based on the digital image correlation is proposed in this paper. To evaluate the effect of the proposed compensation method, a series of stretching experiments in different strains ranging from 5% to 20% were performed. The results showed that our proposed method significantly decreased the errors of strain control. These results indicate that the strain feedback compensation method is very effective in controlling strain and can greatly improve the experimental accuracy.
细胞拉伸技术是细胞力学研究中一种重要且广泛应用的工具。然而,传统拉伸实验中的应变控制条件并不满足要求,会导致较大的误差。这些应变误差会严重影响实验的准确性,降低实验结果的可靠性和可比较性。为了在拉伸过程中实现对细胞膜的精确应变控制,本文提出了一种基于数字图像相关的应变反馈补偿方法。为了评估所提出补偿方法的效果,进行了一系列在 5%至 20%不同应变量的拉伸实验。结果表明,我们提出的方法显著降低了应变控制的误差。这些结果表明,应变反馈补偿方法在控制应变方面非常有效,可以极大地提高实验的准确性。