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一种用于细胞间相互作用力学的三维有限元模型。

A three-dimensional finite element model for the mechanics of cell-cell interactions.

作者信息

Viens Denis, Brodland G Wayne

机构信息

Department of Civil and Environmental Engineering, University of Waterloo, Waterloo, Ontario N2T 2N4, Canada.

出版信息

J Biomech Eng. 2007 Oct;129(5):651-7. doi: 10.1115/1.2768375.

Abstract

Technical challenges, including significant ones associated with cell rearrangement, have hampered the development of three-dimensional finite element models for the mechanics of embryonic cells. These challenges have been overcome by a new formulation in which the contents of each cell, assumed to have a viscosity mu, are modeled using a system of orthogonal dashpots. This approach overcomes a stiffening artifact that affects more traditional models, in which space-filling viscous elements are used to model the cytoplasm. Cells are assumed to be polyhedral in geometry, and each n-sided polygonal face is subdivided into n triangles with a common node at the face center so that it needs not remain flat. A constant tension gamma is assumed to act along each cell-cell interface, and cell rearrangements occur through one of two complementary topological transformations. The formulation predicts mechanical interactions between pairs of similar or dissimilar cells that are consistent with experiments, two-dimensional simulations, contact angle theory, and intracellular pressure calculations. Simulations of the partial engulfment of one tissue type by another show that the formulation is able to model aggregates of several hundred cells without difficulty. Simulations carried out using this formulation suggest new experimental approaches for measuring cell surface tensions and interfacial tensions. The formulation holds promise as a tool for gaining insight into the mechanics of isolated or aggregated embryonic cells and for the design and interpretation of experiments that involve them.

摘要

技术挑战,包括与细胞重排相关的重大挑战,阻碍了用于胚胎细胞力学的三维有限元模型的发展。一种新的公式化方法克服了这些挑战,在该方法中,每个细胞的内容物(假设具有粘度μ)使用一组正交阻尼器进行建模。这种方法克服了影响更传统模型的硬化伪影,在传统模型中,用填充空间的粘性元件对细胞质进行建模。假设细胞在几何形状上为多面体,每个n边形面被细分为n个三角形,这些三角形在面中心有一个公共节点,因此面无需保持平整。假设沿每个细胞 - 细胞界面作用有恒定张力γ,并且细胞重排通过两种互补拓扑变换之一发生。该公式预测了相似或不同细胞对之间的机械相互作用,这些相互作用与实验、二维模拟、接触角理论和细胞内压力计算一致。一种组织类型被另一种组织类型部分吞噬的模拟表明,该公式能够轻松模拟数百个细胞的聚集体。使用该公式进行的模拟提出了测量细胞表面张力和界面张力的新实验方法。该公式有望成为一种工具,用于深入了解分离或聚集的胚胎细胞的力学以及涉及这些细胞的实验的设计和解释。

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