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整合在分子系统生物学中的作用。

The roles of integration in molecular systems biology.

作者信息

O'Malley Maureen A, Soyer Orkun S

机构信息

Department of Philosophy, Quadrangle A14, University of Sydney, Sydney, NSW 2066, Australia.

出版信息

Stud Hist Philos Biol Biomed Sci. 2012 Mar;43(1):58-68. doi: 10.1016/j.shpsc.2011.10.006. Epub 2011 Nov 1.

Abstract

A common way to think about scientific practice involves classifying it as hypothesis- or data-driven. We argue that although such distinctions might illuminate scientific practice very generally, they are not sufficient to understand the day-to-day dynamics of scientific activity and the development of programmes of research. One aspect of everyday scientific practice that is beginning to gain more attention is integration. This paper outlines what is meant by this term and how it has been discussed from scientific and philosophical points of view. We focus on methodological, data and explanatory integration, and show how they are connected. Then, using some examples from molecular systems biology, we will show how integration works in a range of inquiries to generate surprising insights and even new fields of research. From these examples we try to gain a broader perspective on integration in relation to the contexts of inquiry in which it is implemented. In today's environment of data-intensive large-scale science, integration has become both a practical and normative requirement with corresponding implications for meta-methodological accounts of scientific practice. We conclude with a discussion of why an understanding of integration and its dynamics is useful for philosophy of science and scientific practice in general.

摘要

一种常见的思考科学实践的方式是将其归类为以假设或数据驱动。我们认为,尽管这些区分可能在总体上有助于阐明科学实践,但它们不足以理解科学活动的日常动态以及研究项目的发展。日常科学实践中开始受到更多关注的一个方面是整合。本文概述了这个术语的含义以及它从科学和哲学角度是如何被讨论的。我们关注方法、数据和解释的整合,并展示它们是如何相互关联的。然后,通过分子系统生物学的一些例子,我们将展示整合如何在一系列探究中发挥作用,从而产生惊人的见解甚至新的研究领域。从这些例子中,我们试图就整合在其实施的探究背景下获得更广泛的视角。在当今数据密集型的大规模科学环境中,整合已成为一项实际和规范性的要求,对科学实践的元方法论解释具有相应的影响。我们最后讨论了为什么理解整合及其动态对科学哲学和一般科学实践是有用的。

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