Multivariable normal tissue complication probability model-based treatment plan optimization for grade 2-4 dysphagia and tube feeding dependence in head and neck radiotherapy.

Kierkels, Roel G J; Wopken, Kim; Visser, Ruurd; Korevaar, Erik W; van der Schaaf, Arjen; Bijl, Hendrik P; Langendijk, Johannes A · Radiother Oncol · 2016

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Abstract

Radiotherapy of the head and neck is challenged by the relatively large number of organs-at-risk close to the tumor. Biologically-oriented objective functions (OF) could optimally distribute the dose among the organs-at-risk. We aimed to explore OFs based on multivariable normal tissue complication probability (NTCP) models for grade 2-4 dysphagia (DYS) and tube feeding dependence (TFD). One hundred head and neck cancer patients were studied. Additional to the clinical plan, two more plans (an OF<sub>DYS</sub> and OF<sub>TFD</sub>-plan) were optimized per patient. The NTCP models included up to four dose-volume parameters and other non-dosimetric factors. A fully automatic plan optimization framework was used to optimize the OF<sub>NTCP</sub>-based plans. All OF<sub>NTCP</sub>-based plans were reviewed and classified as clinically acceptable. On average, the Δdose and ΔNTCP were small comparing the OF<sub>DYS</sub>-plan, OF<sub>TFD</sub>-plan, and clinical plan. For 5% of patients NTCP<sub>TFD</sub> reduced >5% using OF<sub>TFD</sub>-based planning compared to the OF<sub>DYS</sub>-plans. Plan optimization using NTCP<sub>DYS</sub>- and NTCP<sub>TFD</sub>-based objective functions resulted in clinically acceptable plans. For patients with considerable risk factors of TFD, the OF<sub>TFD</sub> steered the optimizer to dose distributions which directly led to slightly lower predicted NTCP<sub>TFD</sub> values as compared to the other studied plans.

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