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首页> 外文期刊>Philosophical Transactions of the Royal Society of London, Series B. Biological Sciences >General theory of topological explanations and explanatory asymmetry
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General theory of topological explanations and explanatory asymmetry

机译:拓扑解释的一般理论和解释性不对称

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摘要

In this paper, I present a general theory of topological explanations, and illustrate its fruitfulness by showing how it accounts for explanatory asymmetry. My argument is developed in three steps. In the first step, I show what it is for some topological property A to explain some physical or dynamical property B. Based on that, I derive three key criteria of successful topological explanations: a criterion concerning the facticity of topological explanations, i.e. what makes it true of a particular system; a criterion for describing counterfactual dependencies in two explanatory modes, i.e. the vertical and the horizontal and, finally, a third perspectival one that tells us when to use the vertical and when to use the horizontal mode. In the second step, I show how this general theory of topological explanations accounts for explanatory asymmetry in both the vertical and horizontal explanatory modes. Finally, in the third step, I argue that this theory is universally applicable across biological sciences, which helps in unifying essential concepts of biological networks.
机译:在本文中,我展示了一种拓扑解释的一般理论,并通过表明它是如何解释的不对称性的,说明其成果。我的论点是三步发展。在第一步中,我展示了一些拓扑属性A来解释一些物理或动态属性B.基于此,我推出了三个成功拓扑解释的关键标准:关于拓扑解释的事实的标准,即是什么特定系统真实;用于描述两种解释模式的反事实依赖性的标准,即垂直和水平,最后,第三透视图一个告诉我们何时使用垂直和何时使用水平模式。在第二步中,我展示了这种拓扑解释的一般理论如何占垂直和水平解释模式中的解释性不对称。最后,在第三步,我认为这个理论普遍适用于生物科学,这有助于统一生物网络的基本概念。

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