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April 12, 2026Physics in Medicine and Biology0 citationsOpen Access

The role of diffusion-weighted MRI in biological image-guided radiation therapy: a roadmap

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JDJie DengSTSirisha TadimallaTSTyler Seibert

Key Points

  • The aim is to integrate diffusion-weighted imaging into radiation therapy, enhancing adaptive treatment strategies.
  • Collaboration among experts in medical physics, MRI imaging, and radiation oncology
  • Benchmarking current state of diffusion-weighted imaging in radiation therapy
  • Addressing challenges and advancements in imaging acquisition and reconstruction
  • Identified critical challenges in the adoption of diffusion-weighted imaging
  • Highlighted advancements in biophysical modeling and quality assurance
  • Forecasted future developments in personalized adaptive radiotherapy

Abstract

This roadmap provides a comprehensive framework for integrating diffusion-weighted imaging (DWI) into radiation therapy (RT), with an emphasis on its application in magnetic resonance imaging-guided radiotherapy (MRIgRT) and its potential for driving biological image-guided adaptive radiotherapy (BIgART). Developed through collaboration among experts in medical physics, MRI imaging science, and radiation oncology, the paper aims to bridge disciplinary gaps and foster a shared understanding across scientific, technical, and clinical domains. It benchmarks the current state of DWI in RT, identifies critical challenges, and highlights recent advancements in acquisition, reconstruction, biophysical modeling, quality assurance, clinical validation and translation, as well as emerging concepts. By outlining ongoing efforts and forecasting future developments, this roadmap supports the adoption of DWI as a quantitative imaging biomarker for personalized and adaptive radiotherapy in precision oncology.

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Cite This Study

Deng et al. (2026) studied this question.

synapsesocial.com/papers/69db361c4fe01fead37c4678https://doi.org/10.1088/1361-6560/ae5d80
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