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TIME LAPSE OBSERVATION BASED MODELING AND IDENTIFICATION OF CELL BEHAVIORS IN ANGIOGENIC SPROUT DEVELOPMENT

机译:基于时间流逝观察的血管生成萌芽发展中的细胞行为的建模与鉴定

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This paper presents a method for deriving dynamic equations for Endothelial Cell (EC) motion and estimating parameters based on time lapse imagery of angiogenic sprout development. Angiogenesis is the process whereby a collection of endothelial cells sprout out from an existing blood vessel, degrade the surrounding scaffold and form a new blood vessel. Sprout formation requires that a collection of ECs all work together and coordinate their movements and behaviors. The process is initiated and guided by a collection of external growth factors. In addition, the individual cells communicate and respond to each other's movements to behave in a coordinated fashion. The mechanics of cell coordination are extremely complex and include both chemical and mechanical communication between cells and between cells and the matrix. Despite the complexity of the physical system, with many variables that cannot be measured in real time, the ECs behave in a predictable manner based on just a few quantities that can be measured in real time. This work presents a methodology for constructing a set of simple stochastic equations for cell motion dependent only on quantities obtained from time lapse data observed from in vitro experiments. Model parameters are identified from time lapse data using a Maximum Likelihood Estimator.
机译:本文提出了推导动力学方程为内皮细胞(EC)的运动和基于血管生成萌芽发育时间推移图象估算参数的方法。血管生成是过程,由此内皮细胞的集合从现有的血管发芽出来,降低周围支架并形成新的血管。芽形成需要内皮细胞的集合,与其他人一起协调他们的行动和行为。该过程被启动,并通过外部生长因子的集合引导。此外,单个细胞沟通,彼此的运动响应以协调的方式工作。细胞协调的机制极其复杂,并且包括细胞间和细胞和基质之间的化学和机械连通。尽管物理系统,有许多因素是无法实时测量的复杂性,内皮细胞的行为可预测的方式基于这一点可以在实时测量几个数量。这项工作提出用于构建一组简单的随机方程的用于只取决于从体外实验中观察到时间经过数据获得的参量细胞运动的方法。模型参数是从使用最大似然估计时间的经过数据识别。

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