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May 12, 20260 citationsOpen Access

10 Cell Skeleton and Bio-Physics Bio-Computational & Mathematical Engine

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ISIonut Alexandru Stefan

Key Points

  • The aim is to model the mechanical behavior of eukaryotic cells by integrating various subsystems.
  • Developed a codebase to formalize the mechanical behavior of eukaryotic cells.
  • Coupled five subsystems: actin cortex, actin network, microtubules, nucleus, and focal adhesions.
  • Utilized data from literature for testing and analysis.
  • Successfully coupled subsystems into a single dynamical system for detailed mechanical modeling.
  • Generated test scripts and graphs to validate the model's predictions.
  • Produced tumor math scripts to analyze structural resistance in cellular contexts.

Abstract

Cell Skeleton and Bio-Physics Bio-Computational & Mathematical Engine . Disclaimer , NOT ACTUAL CITOSCKELET, but instead the modeling of strucutral resitence of the cell . This codebase formalises the mechanical behaviour of a eukaryotic cell by coupling fivesubsystems — the actin cortex, the actin network, microtubules, the nucleus, and focaladhesions — into a single dynamical system . Test Results, Tests Scripts, Graphs , Tumor Math Scripts, Data Used From Literature, Digital Program Derived From the Architecture For Data Pipeline Analisis etc.Research Pupose, Open Invite Open Source Project

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Cite This Study

Ionut Alexandru Stefan (2026) studied this question.

synapsesocial.com/papers/6a02c394ce8c8c81e9641007https://doi.org/10.5281/zenodo.19845496
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