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首页> 外文期刊>Energies >The Gouy-Stodola Theorem in Bioenergetic Analysis of Living Systems (Irreversibility in Bioenergetics of Living Systems)
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The Gouy-Stodola Theorem in Bioenergetic Analysis of Living Systems (Irreversibility in Bioenergetics of Living Systems)

机译:生命系统生物能分析中的Gouy-Stodola定理(生命系统生物能学的不可逆性)

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摘要

Thermodynamics studies the transformations of energy occurring in open systems. Living systems, with particular reference to cells, are complex systems in which energy transformations occur. Thermo-electro-chemical processes and transports occur across their border, the cells membranes. These processes take place with important differences between healthy and diseased states. In particular, different thermal and biochemical behaviours can be highlighted between these two states and they can be related to the energy transformations inside the living systems, in particular the metabolic behaviour. Moreover, living systems waste heat. This heat is the consequence of the internal irreversibility. Irreversibility is effectively studied by using the Gouy-Stodola theorem. Consequently, this approach can be introduced in the analysis of the states of living systems, in order to obtain a unifying approach to study them. Indeed, this approach allows us to consider living systems as black boxes and analyze only the inflows and outflows and their changes in relation to the modification of the environment, so information on the systems can be obtained by analyzing their behaviour in relation to the modification of external perturbations. This paper presents a review of the recent results obtained in the thermodynamics analysis of cell systems.
机译:热力学研究开放系统中发生的能量转换。生命系统,特别是细胞,是发生能量转换的复杂系统。热电化学过程和运输发生在其边界即细胞膜上。这些过程的发生在健康状态和患病状态之间存在重要差异。特别是,在这两个状态之间可以突出显示不同的热行为和生化行为,并且它们可能与生命系统内部的能量转换(尤其是代谢行为)有关。此外,生命系统浪费热量。这种热量是内部不可逆性的结果。使用Gouy-Stodola定理可以有效地研究不可逆性。因此,可以将这种方法引入生命系统状态的分析中,从而获得研究它们的统一方法。确实,这种方法使我们可以将生物系统视为黑匣子,并且仅分析流入量和流出量及其与环境变化相关的变化,因此可以通过分析其与环境变化相关的行为来获取有关系统的信息。外部干扰。本文介绍了在细胞系统热力学分析中获得的最新结果。

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