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February 12, 2026PLoS ONE1 citationsOpen Access

Mathematical modeling of the combined effects of thermal burn and local irradiation

QHQuintessa HayRJRachel JenningsACAmy Creel

Key Points

  • The aim is to develop a mechanistic mathematical model to study combined thermal burn and local radiation injuries.
  • Developed a mechanistic mathematical model for radiation combined injury.
  • Captured inflammatory response and fibroblast activity associated with injury resolution.
  • Utilized sensitivity analysis and parameter sampling methods to optimize with limited data.
  • The model reproduced inflammatory and fibroblast behavior consistent with observed injury profiles.
  • Increased modeling flexibility to explore underlying mechanisms of radiation combined injury.

Abstract

Radiation combined injury (RCI), resulting from ionizing radiation exposure accompanied by other injuries such as burn, laceration, or fracture, is associated with higher rates of mortality and severe effects. Current available models lack the ability to capture synergistic effects associated with RCI and/or rely on data-driven approaches that are limited in their predictive capabilities. To address this, we developed a mechanistic mathematical model for local radiation exposure combined with burn injury that captures the inflammatory response and early fibroblast activity associated with injury resolution. We utilized sensitivity analysis and parameter sampling methods to leverage limited data. The model was able to reproduce inflammatory and fibroblast behavior consistent with observed thermal injury and combined injury profiles. The formulation of a mechanistic model for combined injury adds increased modeling flexibility allowing for further exploration of the underlying inflammatory mechanisms and provides a framework for leveraging minimal data for improved predictive models of RCI.

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Cite This Study

Hay et al. (2026) studied this question.

synapsesocial.com/papers/698d6d9f5be6419ac0d52a58https://doi.org/10.1371/journal.pone.0341595
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