Dose summation and image registration strategies for radiobiologically and anatomically corrected dose accumulation in pelvic re-irradiation

Authors

  • Mike Nix Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Stephen Gregory Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Michael Aldred Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Lynn Aspin Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • John Lilley Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Bashar Al-Qaisieh Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Julien Uzan RaySearch Laboratories AB, Stockholm, Sweden
  • Stina Svensson RaySearch Laboratories AB, Stockholm, Sweden
  • Peter Dickinson Department of Clinical Oncology, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK
  • Ane L. Appelt Department of Medical Physics and Engineering, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK; Leeds Institute of Medical Research at St James’s, University of Leeds, Leeds, UK
  • Louise Murray Department of Clinical Oncology, Leeds Cancer Centre, St. James’ University Hospital, Leeds, UK; Leeds Institute of Medical Research at St James’s, University of Leeds, Leeds, UK

DOI:

https://doi.org/10.1080/0284186X.2021.1982145

Keywords:

Reirradiation, deformable image registration, EQD2, dose summation, personalisation

Abstract

Background

Re-irradiation (reRT) is a promising technique for patients with localized recurrence in a previously irradiated area but presents major challenges. These include how to deal with anatomical change between two courses of radiotherapy and integration of radiobiology when summating original and re-irradiation doses. The Support Tool for Re-Irradiation Decisions guided by Radiobiology (STRIDeR) project aims to develop a software tool for use in a commercial treatment planning system to facilitate more informed reRT by accounting for anatomical changes and incorporating radiobiology. We evaluated three approaches to dose summation, incorporating anatomical change and radiobiology to differing extents.

Methods

In a cohort of 21 patients who previously received pelvic re-irradiation the following dose summation strategies were compared: (1) Rigid registration (RIR) and physical dose summation, to reflect the current clinical approach, (2) RIR and radiobiological dose summation in equivalent dose in 2 Gy fractions (EQD2), and (3) Patient-specific deformable image registration (DIR) with EQD2 dose summation.

Results

RIR and physical dose summation (Strategy 1) resulted in high cumulative organ at risk (OAR) doses being ‘missed’ in 14% of cases, which were highlighted by EQD2 dose summation (Strategy 2). DIR (with EQD2 dose summation; Strategy 3) resulted in improved OAR overlap and distance to agreement metrics compared to RIR (with EQD2 dose summation; Strategy 2) and was consistently preferred in terms of clinical utility. DIR was considered to have a clinically important impact on dose summation in 38% of cases.

Conclusion

Re-irradiation cases require individualized assessment when considering dose summation with the previous treatment plan. Fractionation correction is necessary to meaningfully assess cumulative doses and reduce the risk of unintentional OAR overdose. DIR can add clinically relevant information in selected cases, especially for significant anatomical change. Robust solutions for cumulative dose assessment offer the potential for future improved understanding of cumulative OAR tolerances.

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Published

2022-01-02

How to Cite

Nix, M., Gregory, S., Aldred, M., Aspin, L., Lilley, J., Al-Qaisieh, B., … Murray, L. (2022). Dose summation and image registration strategies for radiobiologically and anatomically corrected dose accumulation in pelvic re-irradiation. Acta Oncologica, 61(1), 64–72. https://doi.org/10.1080/0284186X.2021.1982145