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PARAMETRIC IDENTIFIABILITY OF A STRUCTURED KINETIC MODEL FOR MAMMALIAN CELL CULTURES

机译:哺乳动物细胞培养物结构化动力学模型的参数标识

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Model parametric identifiability poses the question ― "based on the mathematical behaviour of the model itself and assuming noise-free data - can all of the model parameters, in principle, be uniquely identified?" A class of parametric models, such as kinetic models, are used to capture the complex dynamics of cellular processes. However, increased model fidelity is often accompanied by an enlargement of the model parameter set and the expensive and time-consuming nature of mammalian cell culture experiments makes model parameter identifiability especially valuable as the development of unidentifiable models can be halted prior to experimental validation stages, in turn saving time and valuable resources. In this work, parameter identifiability analysis was performed on a state-of-the-art cell culture model described by a large differential algebraic equation system containing 200 equations and over 300 parameters. However, both the size and properties of this very large model has meant that a "practical identifiability" or estimability method had to be applied.
机译:模型参数可识别性提出了问题 - “基于模型本身的数学行为以及假设无噪音数据 - 可以是所有模型参数,原则上是唯一的识别?”一类参数模型,例如动态模型,用于捕获蜂窝过程的复杂动态。然而,增加的模型保真度通常伴随着模型参数集的放大,并且哺乳动物细胞培养实验的昂贵且耗时的性质使得模型参数可识别性尤其有价值,因为在实验验证阶段之前可以停止未识别的型号,反过来节省时间和宝贵的资源。在这项工作中,对由包含200方程和超过300个参数的大型差分代数方程系统描述的最先进的细胞培养模型进行参数可识别性分析。然而,这种非常大型模型的尺寸和性质意味着必须应用“实际可识别性”或可评估性方法。

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