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Synapse
February 26, 20260 citationsOpen Access

Physical Mathematics of Embryonic Push/Pull Morphogenesis: A Fractal and Mechanical Framework for Sexual Dimorphism via Ibaguner Fractal Operator (IFO)

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SİSİNAN İBAGÜNER

Key Points

  • This research aims to explore the mechanical and fractal aspects contributing to sexual dimorphism in embryonic development.
  • Proposes a mathematical framework for analyzing morphogenetic processes.
  • Defines male-typical and female-typical morphogenesis characteristics.
  • Examines the role of mechanical forces in tissue architecture.
  • Identifies male morphogenesis as expansive with positive curvature bias.
  • Identifies female morphogenesis as invaginating with negative curvature bias.
  • Suggests that these differences are statistical biases influenced by mechanical feedback.

Abstract

The classical view of sexual differentiation emphasizes genetic and hormonal pathways. However, emerging evidence suggests that mechanical forces and fractal morphogenesis may contribute to subtle but measurable differences in tissue architecture between male and female embryos. We propose that: • Male-typical morphogenesis: “Pushing out” — expansive, space-filling growth withpositive mean curvature bias. • Female-typical morphogenesis: “Drawing in” — invaginating, folding growth withnegative mean curvature bias. These differences are not absolute but represent statistical biases in the morphogenetic field, amplified by mechanosensitive feedback loops. This document provides the complete mathematical formalism for detecting and quantifying these differences.

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Cite This Study

SİNAN İBAGÜNER (2026) studied this question.

synapsesocial.com/papers/699fe3af95ddcd3a253e7c23https://doi.org/10.5281/zenodo.18764394
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