Literature DB >> 17347385

Quantitative assessments of morphological and functional properties of biological trees based on their fractal nature.

Akira Kamiya1, Tatsuhisa Takahashi.   

Abstract

The branching systems in our body (vascular and bronchial trees) and those in the environment (plant trees and river systems) are characterized by a fractal nature: the self-similarity in the bifurcation pattern. They increase their branch density toward terminals according to a power function with the exponent called fractal dimension (D). From a stochastic model based-on this feature, we formulated the fractal-based integrals to calculate such morphological parameters as aggregated branch length, surface area, and content volume for any given range of radius (r). It was followed by the derivation of branch number and cross-sectional area, by virtue of the logarithmic sectioning of the r axis and of the branch radius-length relation also given by a power function of r with an exponent (alpha). These derivatives allowed us to quantify various hydrodynamic parameters of vascular and bronchial trees as fluid conduit systems, including the individual branch flow rate, mean flow velocity, wall shear rate and stress, internal pressure, and circumferential tension. The validity of these expressions was verified by comparing the outcomes with actual data measured in vivo in the vascular beds. From additional analyses of the terminal branch number, we found a simple equation relating the exponent (m) of the empirical power law (Murray's so-called cube law) to the other exponents as (m=D+alpha). Finally, allometric studies of mammalian vascular trees revealed uniform and scale-independent distributions of terminal arterioles in organs, which afforded an infarct index, reflecting the severity of tissue damage following arterial infarction.

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Year:  2007        PMID: 17347385     DOI: 10.1152/japplphysiol.00856.2006

Source DB:  PubMed          Journal:  J Appl Physiol (1985)        ISSN: 0161-7567


  15 in total

1.  Intraspecific scaling laws of vascular trees.

Authors:  Yunlong Huo; Ghassan S Kassab
Journal:  J R Soc Interface       Date:  2011-06-15       Impact factor: 4.118

2.  Mathematical modeling approaches in the study of glaucoma disparities among people of African and European descents.

Authors:  Giovanna Guidoboni; Alon Harris; Julia C Arciero; Brent A Siesky; Annahita Amireskandari; Austin L Gerber; Andrew H Huck; Nathaniel J Kim; Simone Cassani; Lucia Carichino
Journal:  J Coupled Syst Multiscale Dyn       Date:  2013-04-01

3.  Fractal dimension analysis of MDCT images for quantifying the morphological changes of the pulmonary artery tree in patients with pulmonary hypertension.

Authors:  Sun Haitao; Li Ning; Guo Lijun; Gao Fei; Liu Cheng
Journal:  Korean J Radiol       Date:  2011-04-25       Impact factor: 3.500

4.  Morphological and functional properties of the conducting human airways investigated by in vivo computed tomography and in vitro MRI.

Authors:  Tristan Van de Moortele; Christine H Wendt; Filippo Coletti
Journal:  J Appl Physiol (1985)       Date:  2017-11-02

5.  Digital reconstruction and morphometric analysis of human brain arterial vasculature from magnetic resonance angiography.

Authors:  Susan N Wright; Peter Kochunov; Fernando Mut; Maurizio Bergamino; Kerry M Brown; John C Mazziotta; Arthur W Toga; Juan R Cebral; Giorgio A Ascoli
Journal:  Neuroimage       Date:  2013-05-28       Impact factor: 6.556

Review 6.  The role of the circadian system in fractal neurophysiological control.

Authors:  Benjamin R Pittman-Polletta; Frank A J L Scheer; Matthew P Butler; Steven A Shea; Kun Hu
Journal:  Biol Rev Camb Philos Soc       Date:  2013-04-10

7.  Analysis and algorithmic generation of hepatic vascular systems.

Authors:  Lars Ole Schwen; Tobias Preusser
Journal:  Int J Hepatol       Date:  2012-09-26

Review 8.  Extension of the mitochondria dysfunction hypothesis of metabolic syndrome to atherosclerosis with emphasis on the endocrine-disrupting chemicals and biophysical laws.

Authors:  Hong Kyu Lee; Eun Bo Shim
Journal:  J Diabetes Investig       Date:  2013-01-29       Impact factor: 4.232

9.  Spatio-temporal simulation of first pass drug perfusion in the liver.

Authors:  Lars Ole Schwen; Markus Krauss; Christoph Niederalt; Felix Gremse; Fabian Kiessling; Andrea Schenk; Tobias Preusser; Lars Kuepfer
Journal:  PLoS Comput Biol       Date:  2014-03-13       Impact factor: 4.475

10.  Radius exponent in elastic and rigid arterial models optimized by the least energy principle.

Authors:  Yoshihiro Nakamura; Shoichi Awa
Journal:  Physiol Rep       Date:  2014-02-17
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