Neuro-evolutionary evidence for a universal fractal primate brain shape

Author:

Wang Yujiang123,Leiberg Karoline1,Kindred Nathan2,Madan Christopher R.4,Poirier Colline2,Petkov Christopher I.25,Taylor Peter N.123,Mota Bruno6

Affiliation:

1. CNNP Lab (www.cnnp-lab.com), Interdisciplinary Computing and Complex BioSystems Group, School of Computing, Newcastle University

2. Faculty of Medical Sciences, Newcastle University

3. UCL Institute of Neurology, Queen Square

4. School of Psychology, University of Nottingham

5. Department of Neurosurgery, University of Iowa

6. metaBIO Lab, Instituto de Física, Universidade Federal do Rio de Janeiro (UFRJ)

Abstract

The cerebral cortex displays a bewildering diversity of shapes and sizes across and within species. Despite this diversity, we present a universal multi-scale description of primate cortices. We show that all cortical shapes can be described as a set of nested folds of different sizes. As neighbouring folds are gradually merged, the cortices of 11 primate species follow a common scalefree morphometric trajectory, that also overlaps with over 70 other mammalian species. Our results indicate that all cerebral cortices are approximations of the same archetypal fractal shape with a fractal dimension of d f = 2.5. Importantly, this new understanding enables a more precise quantification of brain morphology as a function of scale. To demonstrate the importance of this new understanding, we show a scale-dependent effect of ageing on brain morphology. We observe a more than four-fold increase in effect size (from 2 standard deviations to 8 standard deviations) at a spatial scale of approximately 2 mm compared to standard morphological analyses. Our new understanding may therefore generate superior biomarkers for a range of conditions in the future.

Publisher

eLife Sciences Publications, Ltd

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