Dickinson R B
Department of Chemical Engineering, University of Florida, Gainesville 32601, USA.
J Math Biol. 2000 Feb;40(2):97-135. doi: 10.1007/s002850050006.
A generalized transport model is derived for cell migration in an anisotropic environment and is applied to the specific cases of biased cell migration in a gradient of a stimulus (taxis; e.g., chemotaxis or haptotaxis) or along an axis of anisotropy (e.g., contact guidance). The model accounts for spatial or directional dependence of cell speed and cell turning behavior to predict a constitutive cell flux equation with drift velocity and diffusivity tensor (termed random motility tensor) that are explicit functions of the parameters of the underlying random walk model. This model provides the connection between cell locomotion and the resulting persistent random walk behavior to the observed cell migration on longer time scales, thus it provides a framework for interpreting cell migration data in terms of underlying motility mechanisms.
推导了一个用于描述细胞在各向异性环境中迁移的广义传输模型,并将其应用于在刺激梯度(趋性;例如,趋化性或趋触性)或沿各向异性轴(例如,接触导向)下的偏向性细胞迁移的具体情况。该模型考虑了细胞速度的空间或方向依赖性以及细胞转向行为,以预测具有漂移速度和扩散张量(称为随机运动张量)的本构细胞通量方程,这些张量是基础随机游走模型参数的显式函数。该模型在较长时间尺度上提供了细胞运动与由此产生的持续随机游走行为与观察到的细胞迁移之间的联系,因此它为根据潜在的运动机制解释细胞迁移数据提供了一个框架。