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Fluid dynamics of cell cytokinesis - Numerical analysis of intracellular flow during cell division

机译:细胞胞质分裂的流体动力学-细胞分裂过程中细胞内流动的数值分析

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Intracellular flow of cytoplasmic fluid during cell cytokinesis is investigated. The intercellular bridge connecting two daughter cells is modeled as a cylindrical microchannel whose squeezing causes cytoplasmic flow inside the bridge itself and into the daughter cells. An equation from recent experimental measurements by Zhang and Robinson [W. Zhang, D.N. Robinson, Balance of actively generated contractile and resistive forces controls cytokinesis dynamics, Proceedings of the National Academy of Sciences of the United States of America 102 (2005) 7186-7191.] that governs the dynamics of bridge thinning is implemented in this model. The purpose of this research is to compute intracellular flow induced by the bridge thinning process. Two different types of boundary conditions are compared at the membrane-cytoplasm interface; these are a no-slip condition and a no tangential stress condition. Pressure and flow velocity distributions in the daughter cells and the force exerted by this flow on the daughter cell nucleus are computed. It is established that the pressure difference between the daughter cell and the intercellular bridge increases as time progresses. It is also observed that a region of stagnation develops on the downstream side of the nucleus as the bridge thins. (c) 2006 Elsevier Ltd. All rights reserved.
机译:研究了细胞质分裂过程中细胞质液的细胞内流动。连接两个子细胞的细胞间桥被建模为圆柱状微通道,其挤压会导致细胞质流向桥本身内部并进入子细胞。 Zhang和Robinson [W. Zhang,DN Robinson,主动产生的收缩力和阻力的平衡控制胞质动力学,美国国家科学院院刊102(2005)7186-7191。]模型。这项研究的目的是计算由桥梁变薄过程诱导的细胞内流动。在膜-细胞质界面处比较了两种不同类型的边界条件。这些是防滑条件和切向应力条件。计算子细胞中的压力和流速分布,以及由此流施加在子细胞核上的力。已经确定,子细胞和细胞间桥之间的压力差随着时间的流逝而增加。还观察到,随着桥变薄,停滞区域在核的下游侧发展。 (c)2006 Elsevier Ltd.保留所有权利。

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