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首页> 外文期刊>Physical review, E. Statistical physics, plasmas, fluids, and related interdisciplinary topics >Theoretical predictions of electromechanical deformation of cells subjected to high voltages for membrane electroporation - art. no. 021913
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Theoretical predictions of electromechanical deformation of cells subjected to high voltages for membrane electroporation - art. no. 021913

机译:用于膜电穿孔的高电压细胞的机电变形的理论预测-艺术。没有。 021913

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摘要

An electromechanical analysis based on thin-shell theory is presented to analyze cell shape changes in response to external electric fields. This approach can be extended to include osmotic-pressure changes. Our calculations demonstrate that at large fields, the spherical cell geometry can be significantly modified, and even ellipsoidal forms would be inappropriate to account for the deformation. Values of the surface forces obtained from our calculations are in very good agreement with the 1-10 mN/m range for membrane rupture reported in the literature. The results, in keeping with reports in the literature. demonstrate that the final shape depends on membrane thickness. This has direct implications for tissues in which significant molecular restructuring can occur. It is also shown that. at least for the smaller electric fields, both the cellular surface area and volume change roughly in a quadratic manner with the electric field. Finally, it is shown that the bending moments are generally quite small and can be neglected for a simpler analysis. [References: 57]
机译:提出了一种基于薄壳理论的机电分析方法,以分析细胞形状响应外部电场的变化。该方法可以扩展为包括渗透压变化。我们的计算表明,在大视场下,球形单元的几何形状可以显着改变,甚至椭圆形也不适合考虑变形。从我们的计算中获得的表面力值与文献中报道的膜破裂的1-10 mN / m范围非常吻合。结果与文献报道一致。证明最终形状取决于膜厚度。这直接影响可能发生重大分子重组的组织。它也表明。至少对于较小的电场,细胞表面积和体积都随电场大致以二次方变化。最后,表明弯矩通常很小,为简化分析可以忽略不计。 [参考:57]

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