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耦合模拟与实验:整合系统生物学中的双峰策略。

Coupling simulation and experiment: The bimodal strategy in integrative systems biology.

作者信息

MacLeod Miles, Nersessian Nancy J

机构信息

School of Interactive Computing, Georgia Institute of Technology, Suite 221B, 85 West 5th Street, Atlanta, GA 30308, USA.

出版信息

Stud Hist Philos Biol Biomed Sci. 2013 Dec;44(4 Pt A):572-84. doi: 10.1016/j.shpsc.2013.07.001. Epub 2013 Aug 9.

Abstract

The importation of computational methods into biology is generating novel methodological strategies for managing complexity which philosophers are only just starting to explore and elaborate. This paper aims to enrich our understanding of methodology in integrative systems biology, which is developing novel epistemic and cognitive strategies for managing complex problem-solving tasks. We illustrate this through developing a case study of a bimodal researcher from our ethnographic investigation of two systems biology research labs. The researcher constructed models of metabolic and cell-signaling pathways by conducting her own wet-lab experimentation while building simulation models. We show how this coupling of experiment and simulation enabled her to build and validate her models and also triangulate and localize errors and uncertainties in them. This method can be contrasted with the unimodal modeling strategy in systems biology which relies more on mathematical or algorithmic methods to reduce complexity. We discuss the relative affordances and limitations of these strategies, which represent distinct opinions in the field about how to handle the investigation of complex biological systems.

摘要

将计算方法引入生物学正在催生管理复杂性的新方法策略,而哲学家们才刚刚开始探索和阐述这些策略。本文旨在丰富我们对整合系统生物学方法论的理解,该领域正在开发用于管理复杂问题解决任务的新认知和认识论策略。我们通过对两个系统生物学研究实验室的人种志调查中一位双峰研究者的案例研究来说明这一点。这位研究者在构建模拟模型的同时,通过自己的湿实验室实验构建了代谢和细胞信号通路模型。我们展示了实验与模拟的这种结合如何使她能够构建和验证模型,并对其中的误差和不确定性进行三角测量和定位。这种方法可以与系统生物学中的单峰建模策略形成对比,后者更多地依赖数学或算法方法来降低复杂性。我们讨论了这些策略的相对优势和局限性,它们代表了该领域关于如何处理复杂生物系统研究的不同观点。

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