The fractal based analysis of human face and DNA variations during aging

Human DNA is the main unit that shapes human characteristics and features such as behavior. Thus, it is expected that changes in DNA (DNA mutation) influence human characteristics and features. Face is one of the human features which is unique and also dependent on his gen. In this paper, for the fi...

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Veröffentlicht in:BioScience Trends 2016, Vol.10(6), pp.477-481
Hauptverfasser: Namazi, Hamidreza, Akrami, Amin, Hussaini, Jamal, Silva, Osmar N., Wong, Albert, Kulish, Vladimir V.
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container_end_page 481
container_issue 6
container_start_page 477
container_title BioScience Trends
container_volume 10
creator Namazi, Hamidreza
Akrami, Amin
Hussaini, Jamal
Silva, Osmar N.
Wong, Albert
Kulish, Vladimir V.
description Human DNA is the main unit that shapes human characteristics and features such as behavior. Thus, it is expected that changes in DNA (DNA mutation) influence human characteristics and features. Face is one of the human features which is unique and also dependent on his gen. In this paper, for the first time we analyze the variations of human DNA and face simultaneously. We do this job by analyzing the fractal dimension of DNA walk and face during human aging. The results of this study show the human DNA and face get more complex by aging. These complexities are mapped on fractal exponents of DNA walk and human face. The method discussed in this paper can be further developed in order to investigate the direct influence of DNA mutation on the face variations during aging, and accordingly making a model between human face fractality and the complexity of DNA walk.
doi_str_mv 10.5582/bst.2016.01182
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source MEDLINE; Elektronische Zeitschriftenbibliothek - Frei zugängliche E-Journals; J-STAGE (Japan Science & Technology Information Aggregator, Electronic) Freely Available Titles - Japanese
subjects Aging - genetics
Aging - physiology
Algorithms
complexity
DNA mutation
DNA walk
Face
fractal dimension
Fractals
Humans
Models, Theoretical
Mutation
title The fractal based analysis of human face and DNA variations during aging
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