Power scaling, vascular branching, and the Golden Ratio

The Golden Ratio (a ratio of ~1.618:1) appears repeatedly in nature including structural and functional traits of organisms (e.g. Fibonacci spirals of snail shells and certain seed heads), the spiraled shape of galaxies and hurricanes, and even in much cultural architecture and art. In the mid-19th...

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Main Authors: Paul Frater, A. Bradley Duthie
Format: Article
Language:English
Published: Queen's University 2016-07-01
Series:Ideas in Ecology and Evolution
Subjects:
Online Access:https://ojs.library.queensu.ca/index.php/IEE/article/view/6312
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spelling doaj-0202384c8fe94181bd948870284027952020-11-24T21:52:57ZengQueen's UniversityIdeas in Ecology and Evolution1918-31782016-07-01916312Power scaling, vascular branching, and the Golden RatioPaul Frater0A. Bradley Duthie1University of IcelandUniversity of AberdeenThe Golden Ratio (a ratio of ~1.618:1) appears repeatedly in nature including structural and functional traits of organisms (e.g. Fibonacci spirals of snail shells and certain seed heads), the spiraled shape of galaxies and hurricanes, and even in much cultural architecture and art. In the mid-19th century, branching structures in plant and animal vascular systems were found to follow the Golden Ratio; that is, successive branches in the vascular systems of plants and animals tend to follow a length ratio of about 1.618:1. Here we present a model that uses this empirical evidence as a branching ratio in theoretical vascular systems. We then use a defined mass of the model system as a predictor of log-log scaling of terminal units. In this model, log terminal units and log mass scale similarly with that of other models as well as empirical evidence, but with more parsimony and a perspective not yet offered among all available models of allometric scaling. This model invites novel and broad hypotheses on the influence of the Golden Ratio on power scaling in organisms.https://ojs.library.queensu.ca/index.php/IEE/article/view/6312Golden RatioVascular BranchingPower ScalingAllometry
collection DOAJ
language English
format Article
sources DOAJ
author Paul Frater
A. Bradley Duthie
spellingShingle Paul Frater
A. Bradley Duthie
Power scaling, vascular branching, and the Golden Ratio
Ideas in Ecology and Evolution
Golden Ratio
Vascular Branching
Power Scaling
Allometry
author_facet Paul Frater
A. Bradley Duthie
author_sort Paul Frater
title Power scaling, vascular branching, and the Golden Ratio
title_short Power scaling, vascular branching, and the Golden Ratio
title_full Power scaling, vascular branching, and the Golden Ratio
title_fullStr Power scaling, vascular branching, and the Golden Ratio
title_full_unstemmed Power scaling, vascular branching, and the Golden Ratio
title_sort power scaling, vascular branching, and the golden ratio
publisher Queen's University
series Ideas in Ecology and Evolution
issn 1918-3178
publishDate 2016-07-01
description The Golden Ratio (a ratio of ~1.618:1) appears repeatedly in nature including structural and functional traits of organisms (e.g. Fibonacci spirals of snail shells and certain seed heads), the spiraled shape of galaxies and hurricanes, and even in much cultural architecture and art. In the mid-19th century, branching structures in plant and animal vascular systems were found to follow the Golden Ratio; that is, successive branches in the vascular systems of plants and animals tend to follow a length ratio of about 1.618:1. Here we present a model that uses this empirical evidence as a branching ratio in theoretical vascular systems. We then use a defined mass of the model system as a predictor of log-log scaling of terminal units. In this model, log terminal units and log mass scale similarly with that of other models as well as empirical evidence, but with more parsimony and a perspective not yet offered among all available models of allometric scaling. This model invites novel and broad hypotheses on the influence of the Golden Ratio on power scaling in organisms.
topic Golden Ratio
Vascular Branching
Power Scaling
Allometry
url https://ojs.library.queensu.ca/index.php/IEE/article/view/6312
work_keys_str_mv AT paulfrater powerscalingvascularbranchingandthegoldenratio
AT abradleyduthie powerscalingvascularbranchingandthegoldenratio
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