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Updated: Mar 7, 2026

Author Spotlight: Improving Radiation Therapy Access with Radiation Planning Assistant
Published on: October 6, 2023
Treatment plan optimization and robustness of 106Ru eye plaque brachytherapy using a novel software tool
Gerd Heilemann1, Lukas Fetty1, Martin Dulovits2
1Division Medical Radiation Physics, Department of Radiation Oncology, Comprehensive Cancer Center, Medical University of Vienna/AKH Vienna, Austria.
Background And Purpose:
To analyze treatment plan robustness and plan optimization strategies of 106Ru eye plaque brachytherapy using a novel software tool.
Materials And Methods:
A treatment planning software was developed that allows to calculate dose-volume metrics. Plaque misplacements were simulated and evaluated with respect to the effect on tumor coverage and dose changes in critical structures. Two treatment plan optimization approaches were analyzed: (a) reducing plaque size and (b) shifting the plaque away from organs-at-risk (OAR).
Results:
Maximum tumor sizes were identified which can be covered by the prescribed dose for different robustness levels (0-2mm). For an apex height of 5mm a 1mm uncertainty yielded changes in D2% to the lens of up to ±13Gy in anterior and ±20Gy to the optic nerve in posterior tumors. By reducing the plaque size Dmean and D2% to lens, optic nerve and macula were decreased by >60% for most simulated cases. Similarly, by shifting the plaque away from the lens dose reductions of 15%/mm in anterior and even 30%/mm in central tumors were achieved.
Conclusion:
Critical structures in the treatment of uveal melanomas with 106Ru plaques can benefit from the proposed, computational treatment plan optimization.
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