Models that predict the form of hierarchical branching networks typically invoke optimization based on biomechanical similitude, the minimization of impedance to fluid flow, or construction costs. Unfortunately, due to the small size and high number of vein segments found in real biological networks, complete descriptions of networks needed to evaluate such models are rare. To help address this we report results from the analysis of the branching geometry of 349 leaf vein networks comprising over 1.5 million individual vein segments. In addition to measuring the diameters of individual veins before and after vein bifurcations, we also assign vein orders using the Horton-Strahler ordering algorithm adopted from the study of river networks. O...
In the present paper the statistical data on network geometry of the venation system of Morus alba ...
Vascular plants vary over 12 orders of magnitude in body mass and exhibit complex branching. We prov...
Leaf veins are almost ubiquitous across the range of terrestrial plant diversity, yet their influenc...
<div><p>Models that predict the form of hierarchical branching networks typically invoke optimizatio...
The structure of river networks is compared with the vein structure of leaves. The two structures ar...
The branching of fluidic networks becomes a subject of great interest due to its importance in under...
There have been numerous attempts to derive general models for the structure and function of resourc...
Plant vascular networks are central to botanical form, function, and diversity. Here, we develop a t...
Summary Leaves of vascular plants use specific tissues to irrigate the lamina (veins) and to regul...
Complex flow systems such as the vascular and respiratory trees are made of large and small vessels ...
The aim of this study is to quantify the porcine coronary arterial branching pattern and to use this...
There is a remarkable relationship between an organism's metabolic rate (resting power consumption) ...
The structure of a river network may be seen as a discrete set of nested sub-networks built out of i...
<div><p>Modern models that derive allometric relationships between metabolic rate and body mass are ...
Leaf venation networks evolved along several functional axes, including resource transport, damage r...
In the present paper the statistical data on network geometry of the venation system of Morus alba ...
Vascular plants vary over 12 orders of magnitude in body mass and exhibit complex branching. We prov...
Leaf veins are almost ubiquitous across the range of terrestrial plant diversity, yet their influenc...
<div><p>Models that predict the form of hierarchical branching networks typically invoke optimizatio...
The structure of river networks is compared with the vein structure of leaves. The two structures ar...
The branching of fluidic networks becomes a subject of great interest due to its importance in under...
There have been numerous attempts to derive general models for the structure and function of resourc...
Plant vascular networks are central to botanical form, function, and diversity. Here, we develop a t...
Summary Leaves of vascular plants use specific tissues to irrigate the lamina (veins) and to regul...
Complex flow systems such as the vascular and respiratory trees are made of large and small vessels ...
The aim of this study is to quantify the porcine coronary arterial branching pattern and to use this...
There is a remarkable relationship between an organism's metabolic rate (resting power consumption) ...
The structure of a river network may be seen as a discrete set of nested sub-networks built out of i...
<div><p>Modern models that derive allometric relationships between metabolic rate and body mass are ...
Leaf venation networks evolved along several functional axes, including resource transport, damage r...
In the present paper the statistical data on network geometry of the venation system of Morus alba ...
Vascular plants vary over 12 orders of magnitude in body mass and exhibit complex branching. We prov...
Leaf veins are almost ubiquitous across the range of terrestrial plant diversity, yet their influenc...