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Updated: May 14, 2026

Tumor Hypoxia Assessment: In Vivo 3D Oxygen Imaging Through Electron Paramagnetic Resonance
Published on: February 14, 2025
Modelling tumour oxygenation, reoxygenation and implications on treatment outcome
Iuliana Toma-Dasu1, Alexandru Dasu
1Medical Radiation Physics, Stockholm University and Karolinska Institutet, 171 76 Stockholm, Sweden. iuliana.livia.dasu@ki.se
Abstract:
Oxygenation is an important component of the tumour microenvironment, having a significant impact on the progression and management of cancer. Theoretical determination of tissue oxygenation through simulations of the oxygen transport process is a powerful tool to characterise the spatial distribution of oxygen on the microscopic scale and its dynamics and to study its impact on the response to radiation. Accurate modelling of tumour oxygenation must take into account important aspects that are specific to tumours, making the quantitative characterisation of oxygenation rather difficult. This paper aims to discuss the important aspects of modelling tumour oxygenation, reoxygenation, and implications for treatment.
