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首页> 外文期刊>The Journal of Experimental Biology >A critical understanding of the fractal model of metabolic scaling
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A critical understanding of the fractal model of metabolic scaling

机译:对代谢缩放的分形模型的批判性理解

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The exponent of the scaling of metabolic rate with body mass has been the subject of debate for more than a century. The argument is at two levels, one concerning questions of empirical support for the exponent and the other, how to derive it theoretically. At this second level, the exponent is usually treated as the outcome of an underlying physical burden and approached as the search for a natural law emerging within energetic and geometric constraints. Recently, a model relying on fractal geometry was proposed as a general explanation for the phenomenon. In the present study, a reanalysis of the fractal model is performed to verify its validity. All the conditions that allow for the connection between the geometric proposition and the allometric exponent are evaluated, as well as the energy loss minimization procedure put forward in the model. It is demonstrated that the minimization procedure is mathematically incorrect and ill-posed. Also, it is shown that none of the connecting conditions are fulfilled. Therefore, it is concluded that the fractal model lacks self-consistency and correct statement: it relies on strong assumptions of homogeneity in morpho-physiological features among organisms instead of demonstrating them, as claimed by its authors. It is proposed that empiricists and theoreticians should rather evaluate the frameworks for addressing metabolic scaling phenomena.
机译:代谢率随体重变化的指数已成为一个多世纪以来争论的主题。该论点有两个层次,一个是关于对指数的经验支持的问题,另一个是关于如何从理论上推导它的问题。在第二个层次上,指数通常被视为潜在的身体负担的结果,并且被视为寻找在能量和几何约束下出现的自然定律。最近,提出了一种基于分形几何的模型作为对该现象的一般解释。在本研究中,对分形模型进行了重新分析以验证其有效性。评估所有允许几何命题和异速指数之间联系的条件,以及模型中提出的最小能量损失程序。证明最小化过程在数学上是不正确的和不适定的。另外,示出了没有连接条件被满足。因此,得出的结论是,分形模型缺乏自洽性和正确的陈述:它依赖于有机体形态生理特征同质性的强大假设,而不是如其作者所声称的那样证明它们。建议经验主义者和理论家应该评估解决代谢结垢现象的框架。

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