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首页> 外文期刊>Journal of Theoretical Biology >A three-dimensional vertex dynamics cell model of space-filling polyhedra simulating cell behavior in a cell aggregate
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A three-dimensional vertex dynamics cell model of space-filling polyhedra simulating cell behavior in a cell aggregate

机译:填充聚合物多面体的三维顶点动力学细胞模型,模拟细胞聚集体中的细胞行为

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We developed a three-dimensional (3D) cell model of a multicellular aggregate consisting of several polyhedral cells to investigate the deformation and rearrangement of cells under the influence of external forces. The polyhedral cells fill the space in the aggregate without gaps or overlaps, consist of contracting interfaces and maintain their volumes. The interfaces and volumes were expressed by 3D vertex coordinates. Vertex movements obey equations of motion that rearrange the cells to minimize total free energy, and undereo an elementary process that exchanges vertex pair connections when vertices approach each other. The total free energy includes the interface energy of cells and the compression or expansion energy of cells. Computer simulations provided the following results: An aggregate of cells becomes spherical to minimize individual cell surface areas; Polygonal interfaces of cells remain flat; Cells within the 3D cell aggregate can move and rearrange despite the absence of free space. We examined cell rearrangement to elucidate the viscoelastic properties of the aggregate, e.g. when an external force flattens a cell aggregate (e.g. under centrifugation) its component cells quickly flatten. Under a continuous external force, the cells slowly rearrange to recover their original shape although the cell aggregate remains flat. The deformation and rearrangement of individual cells is a two-step process with a time lag. Our results showed that morphological and viscoelastic properties of the cell aggregate with long relaxation time are based on component cells where minimization of interfacial energy of cells provides a motive force for cell movement. (C) 2003 Elsevier Ltd. All rights reserved.
机译:我们开发了由几个多面体细胞组成的多细胞聚集体的三维(3D)细胞模型,以研究在外力影响下细胞的变形和重排。多面体单元填充聚集体中的空间而没有间隙或重叠,由收缩界面组成并保持其体积。界面和体积由3D顶点坐标表示。顶点运动服从重新排列单元以最小化总自由能的运动方程,并遵循一个基本过程,当顶点彼此接近时,该过程交换顶点对连接。总自由能包括细胞的界面能和细胞的压缩或膨胀能。计算机仿真提供了以下结果:细胞的聚集变成球形,以最小化单个细胞的表面积;细胞的多边形界面保持平坦;尽管没有可用空间,但3D单元聚合中的单元仍可以移动和重新排列。我们检查了细胞重排以阐明聚集体的粘弹性质,例如。当外力使细胞聚集体变平时(例如在离心作用下),其组成细胞迅速变平。在连续的外力作用下,细胞缓慢重新排列以恢复其原始形状,尽管细胞聚集体保持平坦。单个单元格的变形和重新排列是一个两步过程,存在一定的时滞。我们的结果表明,具有较长弛豫时间的细胞聚集体的形态和粘弹性是基于组成细胞的,其中细胞界面能的最小化为细胞运动提供了动力。 (C)2003 Elsevier Ltd.保留所有权利。

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