人体红细胞变形的有限元分析

Rie Higuchi, Y. Kanno
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引用次数: 2

摘要

用微移液管对红细胞和球细胞进行吸压,并用有限元法对其进行了分析。红细胞和球细胞的比较表明,在相同的吸入压力下,红细胞的y方向位移大于球细胞。x方向应力分布表明,红细胞模型比球细胞模型更容易改变形状,因为红细胞中出现了相反方向的力。这种力似乎使红细胞膜向中心移动。结果表明,在吸液压力和吸液压力的作用下,红细胞膜的形状发生了部分变化。结果还表明,在抽吸压力下,球细胞膜的形状发生了变化,但不仅仅是在与微移管接触的点和受抽吸压力影响的区域;整个球细胞膜似乎改变了形状。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Finite Element Method Analysis of the Deformation of Human Red Blood Cells
An erythrocyte and a spherocyte are subjected to aspiration pressure with a micropipette and analyzed by the finite element method (FEM). The comparison of the erythrocyte and the spherocyte indicates that the y-direction displacement of the erythrocyte was larger than that of the spherocyte under the same aspiration pressure. The x-direction stress distributions show that it is easier to change the shape of the erythrocyte model than that of the spherocyte model because a force in the opposite direction appears in the erythrocyte. This force seems to move the erythrocyte membrane to its center. The results indicate that the shape of the erythrocyte membrane changes partially under aspiration pressure at the point of contact with the micropipette and aspiration pressure. The results also indicate that the shape of the spherocyte membrane changes under aspiration pressure, but not only at a point of contact with the micropipette and the area subject to aspiration pressure; the entire spherocyte membrane seem to change the shape.
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