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Nonmotile Single-Cell Migration as a Random Walk in Nonuniformity: The “Extreme Dumping Limit” for Cell-to-Cell Communications

机译:非含量单细胞迁移作为无均匀性的随机行走:用于细胞到小区通信的“极端倾倒限制”

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摘要

In the present work, we model single-cell movement as a random walk in an external potential observed within the extreme dumping limit, which we define herein as the extreme nonuniform behavior observed for cell responses and cell-to-cell communications. Starting from the Newton–Langevin equation of motion, we solve the corresponding Fokker–Planck equation to compute higher moments of the displacement of the cell, and then we build certain quantities that can be measurable experimentally. We show that, each time, the dynamics depend on the external force applied, leading to predictions distinct from the standard results of a free Brownian particle. Our findings demonstrate that cell migration viewed as a stochastic process is still compatible with biological and experimental observations without the need to rely on more complicated or sophisticated models proposed previously in the literature.
机译:在本作工作中,我们在极端倾倒限制内观察到的外部电位中的单个小区运动,在这里观察到的外部电位,我们在此定义为用于小区响应和小区通信的极端不均匀的行为。从牛顿-Langevin运动方程开始,我们解决了相应的Fokker-Planck方程来计算细胞位移更高的时刻,然后我们构建了一定的数量,可以通过实验可测量。我们表明,每次,动态都取决于所施加的外力,导致从自由褐色粒子的标准结果不同的预测。我们的研究结果表明,视为随机过程的细胞迁移仍然与生物学和实验观察兼容,而无需依赖于文献中提出的更复杂或复杂的模型。

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