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牛顿之后的生命:一种生态形而上学。

Life after Newton: an ecological metaphysic.

作者信息

Ulanowicz R E

机构信息

University of Maryland System, Chesapeake Biological Laboratory, Solomons 20688-0038, USA.

出版信息

Biosystems. 1999 May;50(2):127-42. doi: 10.1016/s0303-2647(98)00097-5.

Abstract

Ecology may indeed be 'deep', as some have maintained, but perhaps much of the mystery surrounding it owes more simply to the dissonance between ecological notions and the fundamentals of the modern synthesis. Comparison of the axioms supporting the Newtonian world view with those underlying the organicist and stochastic metaphors that motivate much of ecosystems science reveals strong disagreements--especially regarding the nature of the causes of events and the scalar domains over which these causes can operate. The late Karl Popper held that the causal closure forced by our mechanical perspective on nature frustrates our attempts to achieve an 'evolutionary theory of knowledge.' He suggested that the Newtonian concept of 'force' must be generalized to encompass the contingencies that arise in evolutionary processes. His reformulation of force as 'propensity' leads quite naturally to a generalization of Newton's laws for ecology. The revised tenets appear, however, to exhibit more scope and allow for change to arise from within a system. Although Newton's laws survive (albeit in altered form) within a coalescing ecological metaphysic, the axioms that Enlightenment thinkers appended to Newton's work seem ill-suited for ecology and perhaps should yield to a new and coherent set of assumptions on how to view the processes of nature.

摘要

生态学或许确实如一些人所主张的那样“深奥”,但围绕它的许多谜团可能更简单地源于生态观念与现代综合理论基础之间的不一致。将支持牛顿世界观的公理与构成许多生态系统科学基础的有机论和随机隐喻的公理进行比较,会发现存在强烈分歧——尤其是在事件原因的性质以及这些原因能够起作用的标量域方面。已故的卡尔·波普尔认为,我们对自然的机械视角所导致的因果封闭阻碍了我们实现“知识进化理论”的尝试。他建议将牛顿的“力”的概念进行推广,以涵盖进化过程中出现的偶然性。他将力重新表述为“倾向”,这很自然地导致了牛顿定律在生态学上的推广。然而,修订后的原则似乎展现出更大的适用范围,并允许变化从系统内部产生。尽管牛顿定律在融合的生态形而上学中得以留存(尽管形式有所改变),但启蒙运动思想家附加到牛顿著作上的公理似乎并不适合生态学,或许应该让位于一套关于如何看待自然过程的全新且连贯的假设。

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