【2h】

A general basis for quarter-power scaling in animals

机译:动物四分之一功率缩放的一般基础

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摘要

It has been known for decades that the metabolic rate of animals scales with body mass with an exponent that is almost always <1, >2/3, and often very close to 3/4. The 3/4 exponent emerges naturally from two models of resource distribution networks, radial explosion and hierarchically branched, which incorporate a minimum of specific details. Both models show that the exponent is 2/3 if velocity of flow remains constant, but can attain a maximum value of 3/4 if velocity scales with its maximum exponent, 1/12. Quarter-power scaling can arise even when there is no underlying fractality. The canonical “fourth dimension” in biological scaling relations can result from matching the velocity of flow through the network to the linear dimension of the terminal “service volume” where resources are consumed. These models have broad applicability for the optimal design of biological and engineered systems where energy, materials, or information are distributed from a single source.
机译:几十年来,众所周知,动物的代谢率与体重成比例,其指数几乎总是<1,> 2/3,并且经常非常接近3/4。 3/4指数自然来自两种资源分配网络模型,即径向爆炸模型和分层分支模型,其中包含了最少的特定细节。两种模型都表明,如果流速保持恒定,则指数为2/3,但如果流速以最大指数1/12进行缩放,则最大值可以达到3/4。即使没有潜在的分形,也可能出现四分之一功率缩放。生物比例关系中的规范“第四维度”可以通过将流经网络的速度与消耗资源的终端“服务量”的线性维度相匹配来得出。这些模型对于从单一来源分配能量,材料或信息的生物和工程系统的最佳设计具有广泛的适用性。

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