托马斯·库恩:更好地理解扩展进化综合的关键。

IF 1.3 4区 生物学 Q3 BIOLOGY
Theory in Biosciences Pub Date : 2024-02-01 Epub Date: 2023-11-17 DOI:10.1007/s12064-023-00409-w
Koen B Tanghe
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引用次数: 0

摘要

近年来,一些学者明确质疑将卡尔·波普尔和托马斯·s·库恩等人提出的关于科学变化的经典和“老式”理论应用于扩展进化综合(EES)的确切性质和意义的问题的可取性或实用性。据推测,这些二十世纪的哲学家对于更好地理解这种新的进化研究理论框架是完全不相干的。在这里,我们将论证,EES可以根据库恩理论中尚未充分考虑甚至被忽视的元素进行富有成效的解释。首先,在他独创的、具有历史意义的科学哲学中,库恩不仅区分了小的和大的科学革命,他还指出,范式可以扩展和重新制定。与它的名字所暗示的相反,主流EES可以被解释为对现代进化论的库恩式重新表述。第二,迄今为止,人们还忽略了,EES可以用库恩后来的、试探性的进化科学哲学来解释。有了EES,进化生物学中一个古老的二分法可能正在被形式化和制度化。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Thomas S. Kuhn: key to a better understanding of the extended evolutionary synthesis.

In recent years, some scholars have explicitly questioned the desirability or utility of applying the classical and "old-fashioned" theories of scientific change by the likes of Karl Popper and Thomas S. Kuhn to the question of the precise nature and significance of the extended evolutionary synthesis (EES). Supposedly, these twentieth-century philosophers are completely irrelevant for a better understanding of this new theoretical framework for the study of evolution. Here, it will be argued that the EES can be fruitfully interpreted in terms of, as yet, insufficiently considered or even overlooked elements from Kuhn's theory. First, in his original, historical philosophy of science, Kuhn not only distinguished between small and big scientific revolutions, he also pointed out that paradigms can be extended and reformulated. In contrast with what its name suggests, the mainstream EES can be interpreted as a Kuhnian reformulation of modern evolutionary theory. Second, it has, as yet, also been overlooked that the EES can be interpreted in terms of Kuhn's later, tentative evolutionary philosophy of science. With the EES, an old dichotomy in evolutionary biology is maybe being formalized and institutionalized.

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来源期刊
Theory in Biosciences
Theory in Biosciences 生物-生物学
CiteScore
2.70
自引率
9.10%
发文量
21
审稿时长
3 months
期刊介绍: Theory in Biosciences focuses on new concepts in theoretical biology. It also includes analytical and modelling approaches as well as philosophical and historical issues. Central topics are: Artificial Life; Bioinformatics with a focus on novel methods, phenomena, and interpretations; Bioinspired Modeling; Complexity, Robustness, and Resilience; Embodied Cognition; Evolutionary Biology; Evo-Devo; Game Theoretic Modeling; Genetics; History of Biology; Language Evolution; Mathematical Biology; Origin of Life; Philosophy of Biology; Population Biology; Systems Biology; Theoretical Ecology; Theoretical Molecular Biology; Theoretical Neuroscience & Cognition.
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