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Systems Sciencesand The Problem of reductionism

机译:系统科学和减速主义问题

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During the first decades the systems sciences were strongly connected with the work of Ludwig von Bertalanffy. By identifying and critically examining hte main features of von bertalanffy's work, it is possible to gain a general view of the problems he grappled with, fo key developments in his thought about systems, and also of certain unresolved tensions that emerged in it. One immediately striking line in von bertalanffy is his resolute struggle against mechanistic reductionism in scientific thoutht. VOn bertalanffy prsistently opposed a purely technical conception ofthe world. initially, the opposed its influence in the field of the natural sciences, especially in biology. Later, however, he also opposed its influence in the human and social sciences. To this end he introduced a new view of the organism: the organism is not a closed system with a static mechanical structure, he argued, but an open system in flowing or dynamic equilibrium. A second line in von bertalanffy's work concerns the quest for a unified science incorpating all the sciences. As a first step towards integration, he introduced the open-system model just referred to into the natural sciences. But von Bertalanffy believed this model can also serve as a basis for integrating all the sciences into a general system theory. here, in a critical assessment, attetion is focused on the systems ontology underlying his thinking. Finally, von bertalanffy's systems view is revisited in the light of Herman Dooyeweerd's conception of modalities, an approach which has iven rise to multi-modal systems thinking, one of the contemporary trends in systems thinking.
机译:在第一个数十年中,系统科学与Ludwig Von Bertalanffy的工作密切相关。通过识别和批判性地检查冯·伯拉尼菲的工作的HTE主要特征,有可能掌握他对系统思想的关键发展,也可以获得他努力的问题,以及其出现的某些未解决的紧张局势。冯·贝特兰菲的立即引人注目的是他坚决反对科学Thoutht的机械减速主义的斗争。 Von Bertalanffy Prsistely反对世界的纯粹技术概念。最初,反对其在自然科学领域的影响,特别是在生物学中。然而,后来,他也反对其对人类和社会科学的影响。为此,他介绍了生物体的新视图:他认为有机体不是具有静态机械结构的封闭系统,而是流动或动态平衡的开放系统。 Von Bertalanffy的工作中的第二条线涉及探讨统一的科学犯规所有的科学。作为融入整合的第一步,他介绍了刚刚提到自然科学的开放式系统模型。但是Von Bertalanffy认为,这种模式也可以作为将所有科学整合到一般系统理论中的基础。在这里,在一次关键评估中,收缩专注于他思考的系统本体。最后,贝塔朗菲的系统视图是模式的赫尔曼·多耶威尔德的概念,它有伊芬引起的多模态系统思维,系统思考当代趋势之一办法的光重新考虑。

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