Fractals in the Neurosciences, Part II

Author:

Di Ieva Antonio12,Esteban Francisco J.3,Grizzi Fabio4,Klonowski Wlodzimierz5,Martín-Landrove Miguel6

Affiliation:

1. Division of Neurosurgery, St. Michael’s Hospital, University of Toronto, Toronto, Canada

2. Centre for Anatomy and Cell Biology, Department of Systematic Anatomy, Medical University of Vienna, Vienna, Austria

3. Systems Biology Unit, Department of Experimental Biology, University of Jaén, Jaén, Spain

4. Humanitas Clinical and Research Center, Rozzano, Milan, Italy

5. Nalecz Institute of Biocybernetics and Biomedical Engineering, Polish Academy of Sciences, Warsaw, Poland

6. Centre for Molecular and Medical Physics and National Institute for Bioengineering, Universidad Central de Venezuela, Caracas, Venezuela

Abstract

It has been ascertained that the human brain is a complex system studied at multiple scales, from neurons and microcircuits to macronetworks. The brain is characterized by a hierarchical organization that gives rise to its highly topological and functional complexity. Over the last decades, fractal geometry has been shown as a universal tool for the analysis and quantification of the geometric complexity of natural objects, including the brain. The fractal dimension has been identified as a quantitative parameter for the evaluation of the roughness of neural structures, the estimation of time series, and the description of patterns, thus able to discriminate different states of the brain in its entire physiopathological spectrum. Fractal-based computational analyses have been applied to the neurosciences, particularly in the field of clinical neurosciences including neuroimaging and neuroradiology, neurology and neurosurgery, psychiatry and psychology, and neuro-oncology and neuropathology. After a review of the basic concepts of fractal analysis and its main applications to the basic neurosciences in part I of this series, here, we review the main applications of fractals to the clinical neurosciences for a holistic approach towards a fractal geometry model of the brain.

Publisher

SAGE Publications

Subject

Clinical Neurology,General Neuroscience

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