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On the complete determination of biological systems.

机译:对生物系统的完整测定。

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The nascent field of systems biology ambitiously proposes to integrate information from large-scale biology projects to create computational models that are, in some sense, complete. However, the details of what would constitute a complete systems-level model of an organism are far from clear. To provide a framework for this difficult question it is useful to define a model as a set of rules that maps a set of inputs (e.g. descriptions of the cell's environment) to a set of outputs (e.g. the concentrations of all its RNAs and proteins). We show how the properties of a model affect the required experimental sampling and estimate the number of experiments needed to 'complete' a particular model. Based on these estimates, we suggest that the complete determination of a biological system is a concrete, achievable goal.
机译:系统生物学的新兴领域雄心勃勃地提出要整合来自大规模生物学项目的信息,以创建某种程度上是完整的计算模型。但是,关于构成一个生物的完整系统级模型的细节尚不清楚。为了提供一个解决这个难题的框架,将模型定义为一组将一组输入(例如,细胞环境的描述)映射到一组输出(例如,其所有RNA和蛋白质的浓度)的规则很有用。 。我们将展示模型的属性如何影响所需的实验采样,并估算“完成”特定模型所需的实验次数。基于这些估计,我们建议完全确定生物系统是一个具体的可实现的目标。

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