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Constitutive equations of erythrocyte membrane incorporating evolving preferred configuration.

机译:红细胞膜的本构方程结合了不断发展的优选构型。

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摘要

The erythrocyte membrane is modeled as a two-dimensional viscoelastic continuum that evolves under the application of stress. The present analysis of the erythrocyte membrane is motivated by the recent development of knowledge about its molecular structure. The constitutive equations proposed in the present analysis explain in a consistent manner the data on both the deformation and recovery phases of the micropipette experiment. The rheological equations of the present study are applied in a later section to the analysis of a plane membrane deformation that is quantitatively similar to the tank-treading motion of the erythrocytes in a shear field. The computations yield useful information on how the membrane viscosity becomes a more dominant feature in tank-treading motion. The material constants appearing in the proposed constitutive equations may be useful indications of the biochemical state of the membrane in health and disease.
机译:红细胞膜被建模为在压力作用下演化的二维粘弹性连续体。当前对红细胞膜的分析是受关于其分子结构的知识的最新发展所推动的。本分析中提出的本构方程以一致的方式解释了微量移液器实验的变形和恢复阶段的数据。本研究的流变方程将在后面的部分中用于分析平面膜变形,该变形在定量上类似于剪切场中红细胞的踩踏运动。计算得出有用的信息,说明膜粘度如何在踏车运动中成为更主要的特征。提出的本构方程中出现的材料常数可能是健康和疾病中膜生物化学状态的有用指示。

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