Clinical necessity of multi-image based (4DMIB) optimization for targets affected by respiratory motion and treated with scanned particle therapy – A comprehensive review

Antje Christin Knopf, Katarzyna Czerska, Francesco Fracchiolla, Christian Graeff, Silvia Molinelli, Ilaria Rinaldi, Antoni Rucincki, Edmond Sterpin, Kristin Stützer, Petra Trnkova, Ye Zhang, Joe Y. Chang, Huan Giap, Wei Liu, Steven E. Schild, Charles B. Simone, Antony J. Lomax, Arturs Meijers

Research output: Contribution to journalReview articlepeer-review

12 Scopus citations

Abstract

4D multi-image-based (4DMIB) optimization is a form of robust optimization where different uncertainty scenarios, due to anatomy variations, are considered via multiple image sets (e.g., 4DCT). In this review, we focused on providing an overview of different 4DMIB optimization implementations, introduced various frameworks to evaluate the robustness of scanned particle therapy affected by breathing motion and summarized the existing evidence on the necessity of using 4DMIB optimization clinically. Expected potential benefits of 4DMIB optimization include more robust and/or interplay-effect-resistant doses for the target volume and organs-at-risk for indications affected by anatomical variations (e.g., breathing, peristalsis, etc.). Although considerable literature is available on the research and technical aspects of 4DMIB, clinical studies are rare and often contain methodological limitations, such as, limited patient number, motion amplitude, motion and delivery time structure considerations, number of repeat CTs, etc. Therefore, the data are not conclusive. In addition, multiple studies have found that robust 3D optimized plans result in dose distributions within the set clinical tolerances and, therefore, are suitable for a treatment of moving targets with scanned particle therapy. We, therefore, consider the clinical necessity of 4DMIB optimization, when treating moving targets with scanned particle therapy, as still to be demonstrated.

Original languageEnglish (US)
Pages (from-to)77-85
Number of pages9
JournalRadiotherapy and Oncology
Volume169
DOIs
StatePublished - Apr 2022

Keywords

  • 4D optimization
  • Motion management
  • Multi-image-based optimization
  • Proton therapy

ASJC Scopus subject areas

  • Hematology
  • Oncology
  • Radiology Nuclear Medicine and imaging

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