Chen H H, Brodland G W
Department of Civil Engineering, University of Waterloo, Ontario, Canada.
J Biomech Eng. 2000 Aug;122(4):394-401. doi: 10.1115/1.1286563.
A new cell-level finite element formulation is presented and used to investigate how epithelia and other planar collections of viscous cells might deform during events such as embryo morphogenesis and wound healing. Forces arising from cytoskeletal components, cytoplasm viscosity, and cell-cell adhesions are included. Individual cells are modeled using multiple finite elements, and cell rearrangements can occur. Simulations of cell-sheet stretching indicate that the initial stages of sheet stretching are characterized by changes in cell shape, while subsequent stages are governed by cell rearrangement. Inferences can be made from the simulations about the forces that act in real cell sheets when suitable experimental data are available.
提出了一种新的细胞水平有限元公式,并用于研究上皮细胞和其他粘性细胞的平面集合在胚胎形态发生和伤口愈合等过程中可能如何变形。其中包括细胞骨架成分、细胞质粘度和细胞间粘附产生的力。使用多个有限元对单个细胞进行建模,并且可能发生细胞重排。细胞片拉伸模拟表明,片拉伸的初始阶段以细胞形状变化为特征,而后续阶段则由细胞重排控制。当有合适的实验数据时,可以从模拟中推断出实际细胞片中作用的力。