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MRI-based simulation of treatment plans for ion radiotherapy in the brain region
Authors:Christopher M. Rank,Nora Hü  nemohr,Armin M. Nagel,Matthias C. Rö  thke,Oliver Jä  kel,Steffen Greilich
Affiliation:1. Division of Medical Physics in Radiation Oncology;2. Division of Medical Physics in Radiology;3. Division of Radiology, German Cancer Research Center (DKFZ), Heidelberg, Germany;4. Department of Radiation Oncology, Heidelberg University Hospital, Heidelberg, Germany
Abstract:

Purpose

To test the potential of MRI-based treatment plan simulation for ion radiotherapy in the brain region.

Materials and methods

A classification-based tissue segmentation method based on discriminant analysis was employed to derive so-called pseudo CT numbers from MR images of three patients with lesions in the head region undergoing ion radiotherapy. Treatment plans for ions, and for comparison purposes also for photons, were subsequently optimized and simulated using both MRI-based pseudo CT and a standard X-ray-based reference CT.

Results

Pseudo CTs revealed mean absolute errors in CT number in the range of 141–165 HU. While soft tissue was in good agreement with reference CT values, large deviations appeared at air cavities and bones as well as at interfaces of different tissue types. In simulations of ion treatment plans, pseudo CT optimizations showed small underdosages of target volumes with deviations in the PTV mean dose of 0.4–2.0% in comparison to reference CT optimizations. In contrast, the PTV mean dose in photon treatment plans differed by no more than 0.2%.

Conclusions

The main challenge in deriving pseudo CT numbers from MRI was the correct assignment of air and compact bone. In this study, the impact of deviations on simulations of ion and photon treatment plans in the brain region was small, however for more complicated morphologies a further improvement of the classification method including MR imaging of compact bone is required.
Keywords:Magnetic resonance imaging   Ion radiotherapy   Ion beam therapy   Photon radiotherapy   Treatment planning   Plan simulation   Adaptive radiotherapy
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