MedicineEngineeringPhysics

M. Maitre, A. Yeo, Gabrielle Drum, Richard Beare, N. Hardcastle, K. Wiltshire, Greg Wheeler, Joseph Yuan-Mou Yang

2026.1.1Physics & Imaging in Radiation Oncology

DOI: 10.1016/j.phro.2026.100917

Abstract

Background and purpose: Cranial radiotherapy for pediatric brain tumors can damage white matter tracts (WMTs), adversely impacting brain development. This study evaluated the feasibility of integrating advanced diffusion MRI (dMRI) tractography-derived WMTs into radiotherapy planning for pediatric supratentorial high-grade tumors. Materials and methods: The study retrospectively recruited eight patients (aged 8-16 years) who had undergone surgery and curative-intent radiotherapy from January 2012 to June 2022. The pre-radiotherapy dMRI was utilized to reconstruct the target and 29 individual WMT masks selected based on their relevance to neurocognition, motor, language, and visual functions. These WMT masks were classified into five distance-based priority groups based on their proximity to the tumor, and were subsequently used to re-optimize radiotherapy plans. The dose-volume metrics of the tract-optimized plans were compared to the standard treated plans using the Wilcoxon signed-rank test. Results: reduction of approximately 1 Gy was achieved to ipsilateral (p < 0.05) and contralateral (p < 0.01) temporal lobes. Conclusion: Integrating advanced dMRI tractography into radiotherapy plan can enable functional sparing of critical WMTs without compromising target coverage for pediatric supratentorial high-grade brain tumors.

Citation format

MAITRE, M., et al. Advanced diffusion MRI tractography for radiotherapy planning in pediatric brain tumors: A feasibility study. Physics & Imaging in Radiation Oncology, 2026, 37: 100917.