Modern models that derive allometric relationships between metabolic rate and body mass are based on the architectural design of the cardiovascular system and presume sibling vessels are symmetric in terms of radius, length, flow rate, and pressure. Here, we study the cardiovascular structure of the human head and torso and of a mouse lung based on three-dimensional images processed via our software Angicart. In contrast to modern allometric theories, we find systematic patterns of asymmetry in vascular branching, potentially explaining previously documented mismatches between predictions (power-law or concave curvature) and observed empirical data (convex curvature) for the allometric scaling of metabolic rate. To examine why these systema...
The aim of this study is to quantify the porcine coronary arterial branching pattern and to use this...
Cells are the fundamental building blocks of organs and tissues. Information and mass flow through c...
Scientists have long sought to understand how vascular networks supply blood and oxygen to cells thr...
Modern models that derive allometric relationships between metabolic rate and body mass are based on...
Cardiovascular networks span the body by branching across many generations of vessels. The resulting...
<p><b>(a)</b> Mouse lung micro-CT images processed by Angicart. <b>(b)</b> Human head and torso MRI ...
Scientists have long sought to understand how vascular networks supply blood and oxygen to cells thr...
Abstract. We build an evolutionary scenario that explains the selection of core physiological quanti...
There is a remarkable relationship between an organism's metabolic rate (resting power consumption) ...
How a particular attribute of an organism changes or scales with its body size is known as an allome...
Do the complex processes of angiogenesis during organism development ultimately lead to a near optim...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
The structure of vascular networks represents a great, unsolved problem in anatomy. Network geometry...
Understanding of vascular organization is a long-standing problem in quantitative biology and biophy...
We present a simple model for the arterial part of the cardiovascular system, based on Poiseuille fl...
The aim of this study is to quantify the porcine coronary arterial branching pattern and to use this...
Cells are the fundamental building blocks of organs and tissues. Information and mass flow through c...
Scientists have long sought to understand how vascular networks supply blood and oxygen to cells thr...
Modern models that derive allometric relationships between metabolic rate and body mass are based on...
Cardiovascular networks span the body by branching across many generations of vessels. The resulting...
<p><b>(a)</b> Mouse lung micro-CT images processed by Angicart. <b>(b)</b> Human head and torso MRI ...
Scientists have long sought to understand how vascular networks supply blood and oxygen to cells thr...
Abstract. We build an evolutionary scenario that explains the selection of core physiological quanti...
There is a remarkable relationship between an organism's metabolic rate (resting power consumption) ...
How a particular attribute of an organism changes or scales with its body size is known as an allome...
Do the complex processes of angiogenesis during organism development ultimately lead to a near optim...
modeling of physiological processes in vasculatures requires an ac-curate representation of network ...
The structure of vascular networks represents a great, unsolved problem in anatomy. Network geometry...
Understanding of vascular organization is a long-standing problem in quantitative biology and biophy...
We present a simple model for the arterial part of the cardiovascular system, based on Poiseuille fl...
The aim of this study is to quantify the porcine coronary arterial branching pattern and to use this...
Cells are the fundamental building blocks of organs and tissues. Information and mass flow through c...
Scientists have long sought to understand how vascular networks supply blood and oxygen to cells thr...