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Descriptive Modeling of the Dynamical Systems and Determination of Feedback Homeostasis at Different Levels of Life Organization

机译:动态系统的描述性建模与不同水平的反馈宿潮的测定

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The state-of-art research in the field of life's organization confronts the need to investigate a number of interacting components, their properties and conditions of sustainable behaviour within a natural system. In biology, ecology and life sciences, the performance of such stable system is usually related to homeostasis, a property of the system to actively regulate its state within a certain allowable limits. In our previous work, we proposed a deterministic model for systems' homeostasis. The model was based on dynamical system's theory and pairwise relationships of competition, amensalism and antagonism taken from theoretical biology and ecology. However, the present paper proposes a different dimension to our previous results based on the same model. In this paper, we introduce the influence of inter-component relationships in a system, wherein the impact is characterized by direction (neutral, positive, or negative) as well as its (absolute) value, or strength. This makes the model stochastic which, in our opinion, is more consistent with real-world elements affected by various random factors. The case study includes two examples from areas of hydrobiology and medicine. The models acquired for these cases enabled us to propose a convincing explanation for corresponding phenomena identified by different types of natural systems.
机译:在生命组织领域的最先进的研究面临着探讨自然系统内可持续行为的许多交互组成部分,其性质和条件的必要性。在生物学,生态和生命科学中,这种稳定系统的性能通常与稳态有关,该系统的性质在某种允许的限度内主动调节其状态。在我们以前的工作中,我们提出了一个系统“宿命期的确定性模型。该模型基于动态系统的理论和对理论生态学和生态学采取的竞争,巨大和拮抗作用的成对关系。但是,本文提出了基于同一模型的先前结果的不同维度。在本文中,我们介绍了系统中组分间关系的影响,其中撞击的表征是方向(中性,正或负)以及其(绝对)值或强度。这使得模型随机与各种随机因素影响的现实世界要素更加一致。案例研究包括来自水性学和医学区域的两个实例。用于这些情况的模型使我们能够提出对不同类型的自然系统鉴定的相应现象的说明解释。

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