生命的分形织锦:分形生理学综述。

IF 0.6 4区 心理学 Q4 PSYCHOLOGY, MATHEMATICAL Nonlinear Dynamics Psychology and Life Sciences Pub Date : 2021-07-01
Bruce J West
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引用次数: 0

摘要

生理学自成立以来,就像许多其他非物理学科一样,在物理学的机械模型的指导下发展。该策略已被证明是非常成功的,甚至在将分形引入建模策略后仍然存在。直到最近才有所改变。随着越来越灵敏的传感器和数学上复杂的数据处理技术的发展和实现,生理网络的真正复杂性已经被揭示出来。这些发展导致了适合物理科学和生命科学的建模策略的分歧。因此,我们回顾了分形概念将我们带入生理学的非机械解释的程度。在这篇关于分形生理学的简短回顾中,出现了临界性的重要性,生理行为中网络的合作性质,以及分数微积分在描述生命系统动力学方面的重要性。我们从回顾中得出一些进一步的推论,并推测哪些研究方向可能对未来的持续成功最有成效。
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The Fractal Tapestry of Life: A Review of Fractal Physiology.

Since its inception the science of physiology, like many other non-physical disciplines, has been guided in its development by the mechanical models of physics. That strategy has proven to be extraordinarily successful, even surviving the introduction of fractals into the modeling strategy. That is until quite recently. The true complexity of physiologic networks has been revealed with the development and implementation of ever more sensitive sensors and mathematically sophisticated data processing techniques. These developments have led to a divergence of the modeling strategies appropriate for the physical sciences from those for the life sciences. Therefore, we review how far the fractal concept has taken us into the non-mechanical interpretation of physiology. What emerges in this brief review of fractal physiology is the increasing importance of criticality, the cooperative nature of networks in physiologic behavior, and the importance of the fractional calculus in characterizing the dynamics of living systems. We draw some further inferences from the review and speculate as to what research directions might be most productive for continuing future success.

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来源期刊
CiteScore
1.40
自引率
11.10%
发文量
26
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