Abstract
Ruthenium-106 (Ru-106) brachytherapy is an established modality for eye-preserving treatment of choroidal melanoma. To achieve optimal treatment outcomes, there should be a balance between tumour control and the risk of healthy tissue toxicity. In this retrospective study, we examined normal tissue complication probability (NTCP) for visual acuity deterioration and late complications to aid the understanding of dose-dependence after Ru-106 treatments. We considered consecutive patients diagnosed with choroidal melanoma and primarily treated at a single institution from 2005–2014. Treatment plans were retrospectively recreated using dedicated software and image guidance to contour the tumour and determine the actual plaque position. Dose distributions were extracted from each plan for all relevant anatomical structures. We considered visual acuity deterioration and late complications (maculopathy, optic neuropathy, ocular hypertension, vascular obliteration, cataract and retinal detachment). Lasso statistics were used to select the most important variables for each analysis. Outcomes were related to dose and clinical characteristics using multivariate Cox regressions analysis. In total, 227 patients were considered and 226 of those were eligible for analysis. Median potential follow-up time was 5.0 years (95% CI: 4.5–6.0). Visual acuity deterioration was related to optic disc-tumour distance and dose metrics from the retina and the macula, with retina V10Gy showing the strongest correlation. Macula V10Gy was the only dose metric impacting risk of maculopathy, while optic disc-tumour distance also proved important. Optic disc V50Gy had the largest impact on optic neuropathy along with optic disc-tumour distance. Optic disc V20Gy was the only variable associated with vascular obliteration. Lens D2% had the largest impact on the risk of cataract along with older age and the largest base dimension. We found no variables associated with the risk of ocular hypertension and retinal detachment. Visual acuity deterioration and most late complications demonstrated dependence on dose delivered to healthy structures in the eye after Ru-106 brachytherapy for choroidal melanomas.
Highlights
Ruthenium-106 (Ru-106) brachytherapy is an established eye-preserving treatment modality for Ruthenium-106 (Ru-106) brachytherapy is an established eye-preserving treatment modality for choroidal melanoma, with good local tumour control rates [1,2]
[3], but corresponding models for normal tissue complication probabilities (NTCP) are required in but corresponding models for normal tissue complication probabilities (NTCP) are required in order to order to decide on treatment modality and optimise treatment at an individual patient level
We decide on treatment modality and optimise treatment an individual patient examined examined the relationship between radiation dose toathealthy tissues and the level
Summary
Ruthenium-106 (Ru-106) brachytherapy is an established eye-preserving treatment modality for Ruthenium-106 (Ru-106) brachytherapy is an established eye-preserving treatment modality for choroidal melanoma, with good local tumour control rates [1,2]. An optimal treatment choroidal melanoma, with good local tumour control rates [1,2]. An optimal treatment strategy has to balance tumour control and the risk of healthy tissue toxicity, especially when a major strategy has to balance tumour control and the risk of healthy tissue toxicity, especially when a major treatment aim is to preserve normal function. [3], but corresponding models for normal tissue complication probabilities (NTCP) are required in but corresponding models for normal tissue complication probabilities (NTCP) are required in order to order to decide on treatment modality and optimise treatment at an individual patient level. We decide on treatment modality and optimise treatment an individual patient examined examined the relationship between radiation dose toathealthy tissues and the level
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