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Hylomorphism and the Metabolic Closure Conception of Life

机译:亚同态与生命的代谢封闭概念

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This paper examines three exemplary theories of living organization with respect to their common feature of defining life in terms of metabolic closure: autopoiesis, (M, R) systems, and chemoton theory. Metabolic closure is broadly understood to denote the property of organized chemical systems that each component necessary for the maintenance of the system is produced from within the system itself, except for an input of energy. It is argued that two of the theories considered—autopoiesis and (M, R) systems—participate in a hylomorphist pattern of thinking which separates the "form" of the living system from its "matter." The analysis and critique of hylomorphism found in the work of the philosopher Gilbert Simondon is then applied to these two theories, and on the basis of this critique it is argued that the chemoton model offers a superior theory of minimal life which overcomes many of the problems associated with the other two. Throughout, the relationship between hylomorphism and the understanding of living things as machines is explored. The paper concludes by considering how hylomorphism as a background ontology for theories of life fundamentally influences the way life is defined.
机译:本文就代谢封闭定义生命的共同特征,研究了三种示例性的生命组织理论:自生,(M,R)系统和化学物质理论。代谢封闭被广泛理解为表示有组织化学系统的特性,除能量输入外,系统维护所需的每个组件都是从系统本身内部产生的。有人认为,所考虑的两种理论-自生系统和(M,R)系统-参与了一种亚同性的思维方式,这种思维方式将生命系统的“形式”与生命的“形式”分开。然后将在哲学家吉尔伯特·西蒙登的著作中发现的亚同质性的分析和批判应用于这两种理论,并基于这种批判,认为化学子模型提供了一种极好的最小寿命理论,该理论克服了许多问题。与其他两个相关联。贯穿整个过程,探讨了同胚性与对生物作为机器的理解之间的关系。本文的最后结论是,将同胚作为生活理论的背景本体论如何从根本上影响生活的定义。

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