CT-guided versus MR-guided radiotherapy: Impact on gastrointestinal sparing in adrenal stereotactic body radiotherapy.

Rodriguez, Lori L; Kotecha, Rupesh; Tom, Martin C; Chuong, Michael D; Contreras, Jessika A; Romaguera, Tino; Alvarez, Diane; McCulloch, James et al. · Radiother Oncol · 2022

retrospective_cohort · Level III

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Abstract

To quantify the indication for adaptive, gated breath-hold (BH) MR-guided radiotherapy (MRgRT<sub>BH</sub>) versus BH or free-breathing (FB) CT-based image-guided radiotherapy (CT-IGRT) for the ablative treatment of adrenal malignancies. Twenty adrenal patients underwent adaptive IMRT MRgRT<sub>BH</sub> to a median dose of 50 Gy/5 fractions. Each patient was replanned for VMAT CT-IGRT<sub>BH</sub> and CT-IGRT<sub>FB</sub> on a c-arm linac. Only CT-IGRT<sub>FB</sub> used an ITV, summed from GTVs of all phases of the 4DCT respiratory evaluation. All used the same 5 mm GTV/ITV to PTV expansion. Metrics evaluated included: target volume and coverage, conformality, mean ipsilateral kidney and 0.5 cc gastrointestinal organ-at-risk (OAR) doses (D<sub>0.5cc</sub>). Adaptive dose for MRgRT<sub>BH</sub> and predicted dose (i.e., initial plan re-calculated on anatomy of the day) was performed for CT-IGRT<sub>BH</sub> and MRgRT<sub>BH</sub> to assess frequency of OAR violations and coverage reductions for each fraction. The more common VMAT CT-IGRT<sub>FB</sub>, with its significantly larger target volumes, proved inferior to MRgRT<sub>BH</sub> in mean PTV and ITV/GTV coverage, as well as small bowel D<sub>0.5cc</sub>. Conversely, VMAT CT-IGRT<sub>BH</sub> delivered a dosimetrically superior initial plan in terms of statistically significant (p ≤ 0.02) improvements in target coverage, conformality and D<sub>0.5cc</sub> to the large bowel, duodenum and mean ipsilateral kidney compared to IMRT MRgRT<sub>BH</sub>. However, non-adaptive CT-IGRT<sub>BH</sub> had a 71.8% frequency of predicted indications for adaptation and was 2.8 times more likely to experience a coverage reduction in PTV D<sub>95%</sub> than predicted for MRgRT<sub>BH</sub>. Breath-hold VMAT radiotherapy provides superior target coverage and conformality over MRgRT<sub>BH</sub>, but the ability of MRgRT<sub>BH</sub> to safely provide ablative doses to adrenal lesions near mobile luminal OAR through adaptation and direct, real-time motion tracking is unmatched.

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