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Entropy as a method to investigate complex biological systems. An alternative view on the biological transition from healthy aging to frailty

机译:熵是研究复杂生物系统的一种方法。从健康衰老到虚弱的生物学过渡的另一种观点

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Everyone is subject to a process of progressive deterioration of control mechanisms, which supervise the complex network of human physiological functions, reducing the individual ability to adapt to emerging situations of stress or change. In the light of results obtained during the last years, it appears that some of the tools of nonlinear dynamics, first developed for the physical sciences are well suited for studies of biological systems. We believe that, considering the level of order or complexity of the anatomical apparatus by measuring a physical quantity, which is the entropy, we can evaluate the health status or vice versa fragility of a biological system. In particular, a reduction in the entropy value, indicates modification of the structural order with a progressive reduction of functional reserve of the individual, which is associated with a failure to adapt to stress conditions, difficult to be analyzed and documented with a unique traditional biochemical or biomolecular vision. Therefore, in this paper, we present a method that, conceptually combines complexity, disease and aging, alloys Poisson statistics, predictive of the personal level of health, to the entropy value indicating the status of bio-dynamic and functional body, seen as a complex and open thermodynamic system.
机译:每个人都处于控制机制逐步恶化的过程中,该机制监督着人类生理功能的复杂网络,从而降低了个体适应压力或变化情况的能力。根据最近几年获得的结果,似乎最早为物理科学开发的某些非线性动力学工具非常适合于生物系统的研究。我们认为,考虑到通过测量物理量(即熵)来考虑解剖设备的有序性或复杂性,我们可以评估生物系统的健康状况,反之亦然。特别是,熵值的降低表明结构顺序的改变,个体功能储备的逐渐降低,这与无法适应压力条件有关,难以用独特的传统生化试剂进行分析和记录或生物分子视觉。因此,在本文中,我们提出了一种方法,该方法在概念上将复杂性,疾病和衰老相结合,对预测个人健康水平的泊松统计量进行合金化,并将熵值表示为指示生物动力和功能体状态的熵值,复杂而开放的热力学系统。

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