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Nanoindentation methods to measure viscoelastic properties of single cells using sharp, flat, and buckling tips inside ESEM

机译:纳米压痕方法使用ESEM内部的尖锐,平坦和屈曲尖端来测量单个细胞的粘弹性

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摘要

In this paper, methods to measure viscoelastic properties of time-dependent materials are proposed using sharp, flat, and buckling tips inside an environmental SEM. Single W303 yeast cells were employed in this study. Each of the tips was used to indent single cells in a nanoindentation test. Three loading histories were used: 1) a ramp loading history, in which a sharp indenter was used; 2) a step loading history, in which a flat indenter was implemented; and 3) a fast unloading history, in which a buckling nanoneedle was applied. Analysis of the viscoelastic properties of single cells was performed for each of the loading histories by choosing an appropriate theory between the correspondence principle and the functional equation. Results from each of the tests show good agreement, from which strong conclusion can be drawn.
机译:在本文中,提出了一种在环境SEM内使用尖锐,平坦和弯曲的尖端来测量随时间变化的材料的粘弹性的方法。在这项研究中使用了单个W303酵母细胞。在纳米压痕测试中,每个技巧都用于压痕单个细胞。使用了三种加载历史记录:1)斜坡加载历史记录,其中使用了尖头压头; 2)分步加载历史记录,其中实施了平压头; 3)快速卸荷历史,其中应用了屈曲的纳米针。通过在对应原理和功能方程之间选择适当的理论,对每种加载历史进行了单细胞粘弹性的分析。每个测试的结果都显示出良好的一致性,从中可以得出有力的结论。

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